<?xml version="1.0" encoding="UTF-8"?><!DOCTYPE article PUBLIC "-//NLM//DTD JATS (Z39.96) Journal Publishing DTD v1.2 20190208//EN" "http://jats.nlm.nih.gov/publishing/1.2/JATS-journalpublishing1.dtd"><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" article-type="data-paper" dtd-version="1.2" xml:lang="en">
    <front>
        <journal-meta>
            <journal-id journal-id-type="pmc">F1000Research</journal-id>
            <journal-title-group>
                <journal-title>F1000Research</journal-title>
            </journal-title-group>
            <issn pub-type="epub">2046-1402</issn>
            <publisher>
                <publisher-name>F1000 Research Limited</publisher-name>
                <publisher-loc>London, UK</publisher-loc>
            </publisher>
        </journal-meta>
        <article-meta>
            <article-id pub-id-type="doi">10.12688/f1000research.169502.1</article-id>
            <article-categories>
                <subj-group subj-group-type="heading">
                    <subject>Data Note</subject>
                </subj-group>
                <subj-group>
                    <subject>Articles</subject>
                </subj-group>
            </article-categories>
            <title-group>
                <article-title>A guide to selecting high-performing antibodies for VCP (UniProt ID: P55072) for use in western blot, immunoprecipitation, and immunofluorescence</article-title>
                <fn-group content-type="pub-status">
                    <fn>
                        <p>[version 1; peer review: 2 approved]</p>
                    </fn>
                </fn-group>
            </title-group>
            <contrib-group>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>Mole&#x00f3;n</surname>
                        <given-names>Vera Ru&#x00ed;z</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Investigation</role>
                    <uri content-type="orcid">https://orcid.org/0000-0003-3728-3158</uri>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>Fotouhi</surname>
                        <given-names>Maryam</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Investigation</role>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>Ryan</surname>
                        <given-names>Joel</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Investigation</role>
                    <xref ref-type="aff" rid="a2">2</xref>
                </contrib>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>Worrall</surname>
                        <given-names>Donovan</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Investigation</role>
                    <uri content-type="orcid">https://orcid.org/0000-0001-5676-5473</uri>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>Ayoubi</surname>
                        <given-names>Riham</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Investigation</role>
                    <role content-type="http://credit.niso.org/">Supervision</role>
                    <role content-type="http://credit.niso.org/">Writing &#x2013; Original Draft Preparation</role>
                    <role content-type="http://credit.niso.org/">Writing &#x2013; Review &amp; Editing</role>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>Francis</surname>
                        <given-names>Vincent</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Writing &#x2013; Review &amp; Editing</role>
                    <uri content-type="orcid">https://orcid.org/0009-0000-7535-8718</uri>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <contrib contrib-type="author" corresp="no">
                    <name>
                        <surname>McPherson</surname>
                        <given-names>Peter S.</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Funding Acquisition</role>
                    <role content-type="http://credit.niso.org/">Supervision</role>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <contrib contrib-type="author" corresp="yes">
                    <name>
                        <surname>Laflamme</surname>
                        <given-names>Carl</given-names>
                    </name>
                    <role content-type="http://credit.niso.org/">Conceptualization</role>
                    <role content-type="http://credit.niso.org/">Funding Acquisition</role>
                    <role content-type="http://credit.niso.org/">Writing &#x2013; Review &amp; Editing</role>
                    <uri content-type="orcid">https://orcid.org/0000-0001-5906-025X</uri>
                    <xref ref-type="corresp" rid="c1">a</xref>
                    <xref ref-type="aff" rid="a1">1</xref>
                </contrib>
                <aff id="a1">
                    <label>1</label>Neuroscience and Neurosurgery, McGill University, Montreal, Qu&#x00e9;bec, Canada</aff>
                <aff id="a2">
                    <label>2</label>McGill University, Montreal, Qu&#x00e9;bec, Canada</aff>
            </contrib-group>
            <author-notes>
                <corresp id="c1">
                    <label>a</label>
                    <email xlink:href="mailto:carl.laflamme@mcgill.ca">carl.laflamme@mcgill.ca</email>
                </corresp>
                <fn fn-type="conflict">
                    <p>
                        <bold>Competing interests: </bold>For this project, the authors developed partnerships with leading antibody manufacturers and KO cell line providers. The partners provide antibodies and KO cell lines to this project at no cost. These partners include: Abcam, ABCD antibodies, ABclonal, Addgene, Aviva Systems Biology, BioTechne, Cell Signaling Technology, Developmental Studies Hybridoma Bank, GeneTex, Horizon Discovery, Institute for Protein Innovation, MilliporeSigma, Proteintech, Synaptic Systems, Thermo Fisher Scientific.</p>
                </fn>
            </author-notes>
            <pub-date pub-type="epub">
                <day>9</day>
                <month>9</month>
                <year>2025</year>
            </pub-date>
            <pub-date pub-type="collection">
                <year>2025</year>
            </pub-date>
            <volume>14</volume>
            <elocation-id>891</elocation-id>
            <history>
                <date date-type="accepted">
                    <day>21</day>
                    <month>8</month>
                    <year>2025</year>
                </date>
            </history>
            <permissions>
                <copyright-statement>Copyright: &#x00a9; 2025 Mole&#x00f3;n VR et al.</copyright-statement>
                <copyright-year>2025</copyright-year>
                <license xlink:href="https://creativecommons.org/licenses/by/4.0/">
                    <license-p>This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.</license-p>
                </license>
            </permissions>
            <self-uri content-type="pdf" xlink:href="https://f1000research.com/articles/14-891/pdf"/>
            <abstract>
                <p>Valosin-containing protein (VCP) is a highly conserved and essential ATPase involved in many cellular processes like neuronal function, protein degradation, organelle maintenance, and stress response regulation. Understanding the specific mechanisms by which VCP plays in health and disease can provide novel insides in therapeutic targets, a process that would be facilitated by the availability of high-quality antibodies. Here we have characterized sixteen VCP commercial antibodies for western blot, immunoprecipitation, and immunofluorescence using a standardized experimental protocol based on comparing read-outs in knockout cell lines and isogenic parental controls. These studies are part of a larger, collaborative initiative seeking to address antibody reproducibility issues by characterizing commercially available antibodies for human proteins and publishing the results openly as a resource for the scientific community. While the use of antibodies and protocols vary between laboratories, we encourage readers to use this report as a guide to select the most appropriate antibodies for their specific needs.</p>
            </abstract>
            <kwd-group kwd-group-type="author">
                <kwd>P55072</kwd>
                <kwd>VCP</kwd>
                <kwd>Valosin-containing protein</kwd>
                <kwd>Transitional endoplasmic reticulum ATPase</kwd>
                <kwd>antibody characterization</kwd>
                <kwd>antibody validation</kwd>
                <kwd>western blot</kwd>
                <kwd>immunoprecipitation</kwd>
                <kwd>immunofluorescence</kwd>
            </kwd-group>
            <funding-group>
                <award-group id="fund-1" xlink:href="https://doi.org/10.13039/100015751">
                    <funding-source>Qu&#x00e9;bec Consortium for Drug Discovery</funding-source>
                </award-group>
                <award-group id="fund-2" xlink:href="https://doi.org/10.13039/100000971">
                    <funding-source>ALS Association</funding-source>
                </award-group>
                <award-group id="fund-3" xlink:href="https://doi.org/10.13039/501100004489">
                    <funding-source>Mitacs</funding-source>
                </award-group>
                <award-group id="fund-4" xlink:href="https://doi.org/10.13039/100009017">
                    <funding-source>ALS Society of Canada</funding-source>
                </award-group>
                <award-group id="fund-5" xlink:href="https://doi.org/10.13039/501100000406">
                    <funding-source>Motor Neurone Disease Association</funding-source>
                </award-group>
                <funding-statement>This work was supported in part by a grant from the ALS-Reproducible Antibody Platform (ALS-RAP). ALS-RAP was created as a public-private partnership by three leading ALS charities: the ALS Association (USA), the Motor Neurone Disease Association (UK), and the ALS Society of Canada. This work was also supported by the Government of Canada through Genome Canada, Genome Quebec, and Ontario Genomics (grant no. OGI-210). RA is supported by a Mitacs fellowship.&#13;
This work was supported by the CQDM (by a grant from the Minist&#x00e8;re de l&#x2019;&#x00c9;conomie, de l&#x2019;Innovation et de&#13;
l&#x2019;&#x00c9;nergie du Qu&#x00e9;bec).</funding-statement>
                <funding-statement>
                    <italic>The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.</italic>
                </funding-statement>
            </funding-group>
        </article-meta>
    </front>
    <body>
        <sec id="sec1" sec-type="intro">
            <title>Introduction</title>
            <p>VCP is a member of the AAA+ (ATPases Associated with diverse cellular Activities) family and a highly conserved ATPase that plays a pivotal role in multiple cellular processes that are essential for neuronal function, including protein degradation, organelle maintenance, and stress response regulation.
                <sup>
                    <xref ref-type="bibr" rid="ref1">1</xref>&#x2013;
                    <xref ref-type="bibr" rid="ref3">3</xref>
                </sup> This protein is a key component of the ubiquitin-proteasome system and autophagy pathways, facilitating the extraction and degradation of misfolded or aggregated proteins from various subcellular compartments.
                <sup>
                    <xref ref-type="bibr" rid="ref4">4</xref>
                </sup> In the central nervous system, the maintenance of proteostasis is critical for neuronal survival, synaptic integrity, and plasticity. Mutations in the 
                <italic toggle="yes">VCP</italic> gene have been implicated in a spectrum of neurodegenerative diseases, including the inclusion body myopathy with Paget&#x2019;s disease and frontotemporal dementia (IBMPFD), amyotrophic lateral sclerosis (ALS), and Parkinson&#x2019;s disease.
                <sup>
                    <xref ref-type="bibr" rid="ref5">5</xref>&#x2013;
                    <xref ref-type="bibr" rid="ref7">7</xref>
                </sup> These pathogenic variants disrupt the VCP&#x2019;s function, leading to impaired protein clearance, mitochondrial dysfunction, and aberrant stress granule dynamics, ultimately contributing to neuronal degeneration. Recent studies also highlight the involvement of VCP in modulating neuroinflammation and axonal transport, underscoring its multifaceted roles in neural homeostasis.
                <sup>
                    <xref ref-type="bibr" rid="ref8">8</xref>
                </sup> Understanding the mechanistic underpinnings of VCP dysfunction offers promising avenues for targeted therapeutic interventions in neurodegenerative disorders.</p>
            <p>This research is part of a broader collaborative initiative in which academics, funders and commercial antibody manufacturers are working together to address antibody reproducibility issues by characterizing commercial antibodies for human proteins using standardized protocols and openly sharing the data.
                <sup>
                    <xref ref-type="bibr" rid="ref9">9</xref>
                </sup> Here we characterized sixteen commercial VCP antibodies, selected and donated by participant antibody manufacturers, for use in western blot, immunoprecipitation, and immunofluorescence (also referred to as immunocytochemistry), enabling biochemical and cellular assessment of VCP properties and function.</p>
            <p>The authors do not engage in result analysis or offer explicit antibody recommendations. Our primary aim is to deliver top-tier data to the scientific community, grounded in Open Science principles. This empowers experts to interpret the characterization data independently, enabling them to make informed choices regarding the most suitable antibodies for their specific experimental needs. Guidelines on how to interpret antibody characterization data found in this study are featured on the YCharOS gateway
                <sup>
                    <xref ref-type="bibr" rid="ref10">10</xref>
                </sup> and in 
                <xref ref-type="table" rid="T4">
Table 4</xref> of this data note.
                <sup>
                    <xref ref-type="bibr" rid="ref9">9</xref>
                </sup>
            </p>
        </sec>
        <sec id="sec2" sec-type="results|discussion">
            <title>Results and discussion</title>
            <p>Our standard protocol involves comparing readouts from wild type (WT) and KO cell lines.
                <sup>
                    <xref ref-type="bibr" rid="ref11">11</xref>
                </sup> In the absence of commercially available KO cell lines, siRNA technology can be employed to knockdown (KD) the target gene.
                <sup>
                    <xref ref-type="bibr" rid="ref12">12</xref>,
                    <xref ref-type="bibr" rid="ref13">13</xref>
                </sup> As 
                <italic toggle="yes">VCP</italic> is an essential gene in many cancer cells, a knockdown (KD) approach was used to deplete the corresponding mRNA using siRNA.
                <sup>
                    <xref ref-type="bibr" rid="ref13">13</xref>
                </sup> To determine which cell line demonstrates high expression of VCP protein and thus be appropriate for KD, the first step is to identify a cell line that expresses sufficient levels of a given protein to generate a measurable signal using antibodies. To this end, we examined the DepMap (Cancer Dependency Map Portal, RRID:SCR_017655) transcriptomics database to identify cell lines that express the target at levels greater than 2.5 log
                <sub>2</sub> (transcripts per million &#x201c;TPM&#x201d; + 1), which we have found to be a suitable cut-off.
                <sup>
                    <xref ref-type="bibr" rid="ref14">14</xref>
                </sup> We selected the U-2 OS cell line for this study. A non-targeting control siRNA pool was used to treat U-2 OS control (ctrl) cells, while 
                <italic toggle="yes">VCP</italic> was KD using a pool of siRNA targeting this gene.</p>
            <p>To screen all sixteen antibodies by western blot, U-2 OS ctrl and 
                <italic toggle="yes">VCP</italic> KD protein lysates were ran on SDS-PAGE, transferred onto nitrocellulose membranes, and then probed with the sixteen antibodies in parallel (
                <xref ref-type="fig" rid="f1">
Figure 1</xref>).</p>
            <fig fig-type="figure" id="f1" orientation="portrait" position="float">
                <label>
Figure 1. </label>
                <caption>
                    <title>VCP antibody screening by western blot.</title>
                    <p>Lysates of U-2 OS ctrl and 
                        <italic toggle="yes">VCP</italic> KD were prepared, and 10 &#x03bc;g of protein were processed for western blot with the indicated VCP antibodies. The Ponceau stained transfers of each blot are presented to show equal loading of ctrl and KD lysates and protein transfer efficiency from the acrylamide gels to the nitrocellulose membrane. Antibody dilutions were chosen according to the recommendations of the antibody supplier. Antibody dilution used: ab109198** at 1/10 000; ab109240** at 1/50 000; ab110308* at 1/10 000; ab36047 at 1/10 000; A13368 at 1/10 000; ARP74898 at 1/10 000; 2648 at 1/10 000; 2649** at 1/10 000; GTX101089 at 1/50 000; GTX113030 at 1/50 000; GTX113099 at 1/50 000; 10736-1-AP at 1/15 000; 60316-1-lg* at 1/10 000; Z-VCP-10** at 1/1000; MA3-004* at 1/30 000; MA5-32612** at 1/30 000. Predicted band size: 89 kDa. ** = recombinant antibody, * = monoclonal antibody.</p>
                </caption>
                <graphic id="gr1" orientation="portrait" position="float" xlink:href="https://f1000research-files.f1000.com/manuscripts/186850/d86dfd90-8a3e-4a1b-88e9-df604019ab1c_figure1.gif"/>
            </fig>
            <p>We then assessed the capability of all sixteen antibodies to capture VCP from U-2 OS protein extracts using immunoprecipitation techniques, followed by western blot analysis. For the immunoblot step, a specific VCP antibody identified previously (refer to 
                <xref ref-type="fig" rid="f1">
Figure 1</xref>) was selected. Equal amounts of the starting material (SM) and the unbound fractions (UB), as well as the whole immunoprecipitate (IP) eluates were separated by SDS-PAGE (
                <xref ref-type="fig" rid="f2">
Figure 2</xref>).</p>
            <fig fig-type="figure" id="f2" orientation="portrait" position="float">
                <label>
Figure 2. </label>
                <caption>
                    <title>VCP antibody screening by immunoprecipitation.</title>
                    <p>U-2 OS lysates were prepared, and immunoprecipitation was performed using 0.5 mg of protein and 2.0 &#x03bc;g of the indicated VCP antibodies pre-coupled to Dynabeads protein A, protein G or Flag-M2 magnetic beads. Samples were washed and processed for western blot with the indicated VCP antibody. For western blot, MA3-004* was used at 1/1000. The Ponceau stained transfers of each blot are shown. SM = 4% starting material, UB = 4% unbound fraction, IP = immunoprecipitate, &lt;=points toward the antibody heavy chain, ** = recombinant antibody, * = monoclonal antibody.</p>
                </caption>
                <graphic id="gr2" orientation="portrait" position="float" xlink:href="https://f1000research-files.f1000.com/manuscripts/186850/d86dfd90-8a3e-4a1b-88e9-df604019ab1c_figure2.gif"/>
            </fig>
            <p>For immunofluorescence, the sixteen antibodies were screened using a mosaic strategy. First, U-2 OS ctrl and 
                <italic toggle="yes">VCP</italic> KD cells were labelled with different fluorescent dyes in order to distinguish the two cell lines, and the VCP antibodies were evaluated. Both ctrl and KD lines imaged in the same field of view to reduce staining, imaging and image analysis bias (
                <xref ref-type="fig" rid="f3">
Figure 3</xref>). Quantification of immunofluorescence intensity in hundreds of ctrl and KD cells was performed for each antibody tested, and the images presented in 
                <xref ref-type="fig" rid="f3">
Figure 3</xref> are representative of this analysis.
                <sup>
                    <xref ref-type="bibr" rid="ref9">9</xref>
                </sup>
            </p>
            <fig fig-type="figure" id="f3" orientation="portrait" position="float">
                <label>
Figure 3. </label>
                <caption>
                    <title>VCP antibody screening by immunofluorescence.</title>
                    <p>U-2 OS ctrl and 
                        <italic toggle="yes">VCP</italic> KD cells were labelled with a green or a far-red fluorescent dye, respectively. Ctrl and KD cells were mixed and plated to a 1:1 ratio on coverslips. Cells were stained with the indicated VCP antibodies and with the corresponding Alexa-fluor 555 coupled secondary antibody including DAPI. Acquisition of the blue (nucleus-DAPI), green (ctrl), red (antibody staining) and far-red (KD) channels was performed. Representative images of the blue and red (grayscale) channels are shown. Ctrl and KD cells are outlined with green and magenta dashed line, respectively. When an antibody was recommended for immunofluorescence by the supplier, we tested it at the recommended dilution. The rest of the antibodies were tested at 1 and 2 &#x03bc;g/ml, and the final concentration was selected based on the detection range of the microscope used and a quantitative analysis not shown here. Antibody dilution used: ab109198** at 1/800; ab109240** at 1/500; ab110308* at 1/1000; ab36047 at 1/100; A13368 at 1/100; ARP74898 at 1/100; 2648 at 1/100; 2649** at 1/100; GTX101089 at 1/500; GTX113030 at 1/500; GTX113099 at 1/1000; 10736-1-AP at 1/1000; 60316-1-lg* at 1/50; Z-VCP-10** at 1/100; MA3-004* at 1/1000; MA5-32612** at 1/1000. Bars = 10 &#x03bc;m. ** = recombinant antibody, * = monoclonal antibody.</p>
                </caption>
                <graphic id="gr3" orientation="portrait" position="float" xlink:href="https://f1000research-files.f1000.com/manuscripts/186850/d86dfd90-8a3e-4a1b-88e9-df604019ab1c_figure3.gif"/>
            </fig>
            <p>In conclusion, we have screened sixteen VCP commercial antibodies by western blot, immunoprecipitation, and immunofluorescence by comparing the signal produced by the antibodies in human U-2 OS ctrl and 
                <italic toggle="yes">VCP</italic> KD cells. To assist users in interpreting antibody performance, 
                <xref ref-type="table" rid="T4">
Table 4</xref> outlines various scenarios in which antibodies may perform in all three applications.
                <sup>
                    <xref ref-type="bibr" rid="ref14">14</xref>
                </sup> High-quality and renewable antibodies that successfully detect VCP were identified in all applications. Researchers who wish to study VCP in a different species are encouraged to select high-quality antibodies, based on the results of this study, and investigate the predicted species reactivity of the manufacturer before extending their research.</p>
            <sec id="sec3">
                <title>Limitations</title>
                <p>Inherent limitations are associated with the antibody characterization platform used in this study. Firstly, the YCharOS project focuses on renewable (recombinant and monoclonal) antibodies and does not test all commercially available VCP antibodies. YCharOS partners provide approximately 80% of all renewable antibodies, but some top-cited polyclonal antibodies may not be available through these partners. We encourage readers to consult vendor documentation to identify the specific antigen each antibody is raised against, where such information is available.</p>
                <p>Secondly, the YCharOS effort employs a non-biased approach that is agnostic to the protein for which antibodies have been characterized. The aim is to provide objective data on antibody performance without preconceived notions about how antibodies should perform or the molecular weight that should be observed in western blot. As the authors are not experts in VCP, only a brief overview of the protein&#x2019;s function and its relevance in disease is provided. VCP experts are invited to analyze and interpret observed banding patterns in western blots and subcellular localization in immunofluorescence.</p>
                <p>Thirdly, YCharOS experiments are not performed in replicates primarily due to the use of multiple antibodies targeting various epitopes. Once a specific antibody is identified, it validates the protein expression of the intended target in the selected cell line, confirms the lack of protein expression in the KO cell line and supports conclusions regarding the specificity of the other antibodies. All experiments are performed using master mixes, and meticulous attention is paid to sample preparation and experimental execution. In IF, the use of two different concentrations serves to evaluate antibody specificity and can aid in assessing assay reliability. In instances where antibodies yield no signal, a repeat experiment is conducted following titration. Additionally, our independent data is performed subsequently to the antibody manufacturers internal validation process, therefore making our characterization process a repeat.</p>
                <p>Lastly, as comprehensive and standardized procedures are respected, any conclusions remain confined to the experimental conditions and cell line used for this study. The use of a single cell type for evaluating antibody performance poses as a limitation, as factors such as target protein abundance significantly impact results. Additionally, the use of cancer cell lines containing gene mutations poses a potential challenge, as these mutations may be within the epitope coding sequence or other regions of the gene responsible for the intended target. Such alterations can impact the binding affinity of antibodies. This represents an inherent limitation of any approach that employs cancer cell lines.</p>
            </sec>
        </sec>
        <sec id="sec4" sec-type="methods">
            <title>Method</title>
            <p>The standardized protocols used to carry out this KO cell line-based antibody characterization platform was established and approved by a collaborative group of academics, industry researchers and antibody manufacturers. The detailed materials and step-by-step protocols used to characterize antibodies in western blot, immunoprecipitation and immunofluorescence are openly available on Protocols.io (
                <ext-link ext-link-type="uri" xlink:href="https://www.protocols.io/view/a-consensus-platform-for-antibody-characterization-3byl49oxrgo5/v1">protocols.io/view/a-consensus-platform-for-antibody-characterization
</ext-link>).
                <sup>
                    <xref ref-type="bibr" rid="ref9">9</xref>
                </sup> Brief descriptions of the experimental setup used to carry out this study can be found below.</p>
            <sec id="sec5">
                <title>Cell lines and antibodies</title>
                <p>The cell lines, primary and secondary antibodies used in this study are listed in 
                    <xref ref-type="table" rid="T1">
Tables 1</xref>, 
                    <xref ref-type="table" rid="T2">2</xref>, and 
                    <xref ref-type="table" rid="T3">3</xref>, respectively. To ensure consistency with manufacturer recommendations and account for proprietary formulations (where antibody concentrations are not disclosed), antibody usage is reported as dilution ratios rather than absolute concentrations. To facilitate proper citation and unambiguous identification, all cell lines and antibodies are referenced with their corresponding Research Resource Identifiers (RRIDs).
                    <sup>
                        <xref ref-type="bibr" rid="ref15">15</xref>,
                        <xref ref-type="bibr" rid="ref16">16</xref>
                    </sup> U-2 OS cells were treated with the ON-TARGETplus Human 
                    <italic toggle="yes">VCP</italic> siRNA from Horizon Discovery, cat. number L-008727-00-0005. Ctrl U-2 OS cells were treated with the ON-TARGETplus Non-targeting Control Pool, cat. number D-001810-10-05. Lipofectamine RNAiMAX (Thermo Fisher Scientific, cat. number 13778030) was used to transfect the siRNA following the manufacturer&#x2019;s protocol. All cell lines used in this study were regularly tested for mycoplasma contamination and were confirmed to be mycoplasma-free.</p>
                <table-wrap id="T1" orientation="portrait" position="float">
                    <label>
Table 1. </label>
                    <caption>
                        <title>Summary of the cell lines used.</title>
                    </caption>
                    <table content-type="article-table" frame="hsides">
                        <thead>
                            <tr>
                                <th align="left" colspan="1" rowspan="1" valign="top">Institution</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Catalog number</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">RRID (Cellosaurus)</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Cell line</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Genotype</th>
                            </tr>
                        </thead>
                        <tbody>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">ATCC</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">HTB-96</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.cellosaurus.org/CVCL_0042">CVCL_0042</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">U-2 OS</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">WT</td>
                            </tr>
                        </tbody>
                    </table>
                </table-wrap>
                <table-wrap id="T2" orientation="portrait" position="float">
                    <label>
Table 2. </label>
                    <caption>
                        <title>Summary of the VCP antibodies tested.</title>
                    </caption>
                    <table content-type="article-table" frame="hsides">
                        <thead>
                            <tr>
                                <th align="left" colspan="1" rowspan="1" valign="top">Compagnie</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Catalog number</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Lot number</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">RRID (Antibody Registry)</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Clonality</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Clone ID</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Host</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Concentration (&#x03bc;g/&#x03bc;l)</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">Vendors recommended applications</th>
                            </tr>
                        </thead>
                        <tbody>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Abcam</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ab109198
                                    <xref ref-type="table-fn" rid="tfn2">**</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GR107429-5</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_10859334">AB_10859334</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">recombinant-mono
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">EPR3308</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.821</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Abcam</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ab109240
                                    <xref ref-type="table-fn" rid="tfn2">**</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GR3176974-8</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_10862588">AB_10862588</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">recombinant-mono
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">EPR3307(2)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.350</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IP,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Abcam</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ab110308
                                    <xref ref-type="table-fn" rid="tfn1">*</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GR82826-3</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_10861815">AB_10861815</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">monoclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">3E8DC11</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">mouse</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.000</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">IP,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Abcam</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ab36047</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GR226632-1</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2288422">AB_2288422</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.300</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">ABclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">A13368</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">81090201</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2760226">AB_2760226</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.770</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Aviva Systems Biology</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ARP74898</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">QC54391-42557</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2936880">AB_2936880</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.500</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Cell Signaling Technology</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2648</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2214632">AB_2214632</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.009</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Cell Signaling Technology</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2649
                                    <xref ref-type="table-fn" rid="tfn2">**</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2214629">AB_2214629</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">recombinant-mono
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">7F3</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.034</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">GeneTex</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GTX101089</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">41801</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_1952544">AB_1952544</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.000</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IP,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">GeneTex</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GTX113030</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">43187</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_1952542">AB_1952542</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.300</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IP,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">GeneTex</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">GTX113099</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">40457</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_10731852">AB_10731852</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.000</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Proteintech</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">10736-1-AP</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">83755</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2214635">AB_2214635</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">-</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.267</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IP,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Proteintech</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">60316-1-lg
                                    <xref ref-type="table-fn" rid="tfn1">*</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">10001981</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2881427">AB_2881427</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">monoclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2A4B10</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">mouse</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.667</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Structural Genomics Consortium</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Z-VCP-10
                                    <xref ref-type="table-fn" rid="tfn2">**</xref>
                                    <sup>,A</sup>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">YSVCPA-c001</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">NA</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">recombinant-mono
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Z-VCP-10</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">human</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.234</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">IP</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Thermo Fisher Scientific</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">MA3-004
                                    <xref ref-type="table-fn" rid="tfn1">*</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">VG292219</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2214638">AB_2214638</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">monoclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">5</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">mouse</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.000</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IP,IF</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Thermo Fisher Scientific</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">MA5-32612
                                    <xref ref-type="table-fn" rid="tfn2">**</xref>
                                </td>
                                <td align="left" colspan="1" rowspan="1" valign="top">VL3152612</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2809889">AB_2809889</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">recombinant-mono
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">JM11-15</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">rabbit</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.000</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Wb,IF</td>
                            </tr>
                        </tbody>
                    </table>
                    <table-wrap-foot>
                        <p>Wb = Western blot, IP = immunoprecipitation, IF = immunofluorescence,</p>
                        <p>A = Z-VCP-10 was a gift from Susanne Gr&#x00e4;slund (Addgene plasmid # 166559; 
                            <ext-link ext-link-type="uri" xlink:href="http://n2t.net/addgene:166559">http://n2t.net/addgene:166559</ext-link>; RRID:Addgene_166559).</p>
                        <fn-group content-type="footnotes">
                            <fn id="tfn1">
                                <label>*</label>
                                <p>
 = monoclonal antibody,</p>
                            </fn>
                            <fn id="tfn2">
                                <label>**</label>
                                <p>
 = recombinant antibody, NA = not available.</p>
                            </fn>
                        </fn-group>
                    </table-wrap-foot>
                </table-wrap>
                <table-wrap id="T3" orientation="portrait" position="float">
                    <label>
Table 3. </label>
                    <caption>
                        <title>
Table of secondary antibodies used.</title>
                    </caption>
                    <table content-type="article-table" frame="hsides">
                        <thead>
                            <tr>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Company</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Secondary antibody</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Catalog number</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
RRID (Antibody Registry)</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Clonality</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Concentration (&#x03bc;g/&#x03bc;L)</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Working concentration (&#x03bc;g/mL)</th>
                            </tr>
                        </thead>
                        <tbody>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Thermo Fisher Scientific</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">HRP-Goat Anti-Rabbit Antibody (H+L)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">65-6120</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2533967">AB_2533967</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.0</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.2</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Thermo Fisher Scientific</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">HRP-Goat Anti-Mouse Antibody (H+L)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">62-6520</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2533947">AB_2533947</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.5</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.75</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Abcam</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Anti-mouse IgG for IP (HRP)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ab131368</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2895114">AB_2895114</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">monoclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.0</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2.0</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">MilliporeSigma</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ANTI-FLAG
                                    <sup>&#x00ae;</sup> M2-Peroxidase (HRP)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">A8592</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_439702">AB_439702</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">monoclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.0</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.1</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Thermo Fisher Scientific</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Alexa Fluor&#x2122; 555-Goat anti-Rabbit IgG (H+L)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">A-21429</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_2535850">AB_2535850</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2.0</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.5</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">Thermo Fisher Scientific</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">Alexa Fluor&#x2122; 555-Goat anti-Mouse IgG (H+L)</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">A-21424</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_141780">AB_141780</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">polyclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">2.0</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">0.5</td>
                            </tr>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">MilliporeSigma</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">ANTI-FLAG
                                    <sup>&#x00ae;</sup> M2-Cy3&#x2122; antibody</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">A9594</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">
                                    <ext-link ext-link-type="uri" xlink:href="https://www.antibodyregistry.org/AB_439700">AB_439700</ext-link>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">monoclonal</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.0</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">1.0</td>
                            </tr>
                        </tbody>
                    </table>
                </table-wrap>
                <table-wrap id="T4" orientation="portrait" position="float">
                    <label>
Table 4. </label>
                    <caption>
                        <title>Illustrations to assess antibody performance in all western blot, immunoprecipitation and immunofluorescence.</title>
                    </caption>
                    <table content-type="article-table" frame="hsides">
                        <thead>
                            <tr>
                                <th align="left" colspan="1" rowspan="1" valign="top">Western blot</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Immunoprecipitation</th>
                                <th align="left" colspan="1" rowspan="1" valign="top">
Immunofluorescence</th>
                            </tr>
                        </thead>
                        <tbody>
                            <tr>
                                <td align="left" colspan="1" rowspan="1" valign="top">

                                    <graphic id="gr4" orientation="portrait" position="float" xlink:href="https://f1000research-files.f1000.com/manuscripts/186850/d86dfd90-8a3e-4a1b-88e9-df604019ab1c_gra1.gif"/>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">

                                    <graphic id="gr5" orientation="portrait" position="float" xlink:href="https://f1000research-files.f1000.com/manuscripts/186850/d86dfd90-8a3e-4a1b-88e9-df604019ab1c_gra2.gif"/>
</td>
                                <td align="left" colspan="1" rowspan="1" valign="top">

                                    <graphic id="gr6" orientation="portrait" position="float" xlink:href="https://f1000research-files.f1000.com/manuscripts/186850/d86dfd90-8a3e-4a1b-88e9-df604019ab1c_gra3.gif"/>
</td>
                            </tr>
                        </tbody>
                    </table>
                    <table-wrap-foot>
                        <p>This table has been reproduced with permission from Ayoubi et al., Elife, 2023.
                            <sup>
                                <xref ref-type="bibr" rid="ref14">14</xref>
                            </sup>
                        </p>
                    </table-wrap-foot>
                </table-wrap>
            </sec>
            <sec id="sec6">
                <title>Antibody screening by western blot</title>
                <p>U-2 OS ctrl and 
                    <italic toggle="yes">VCP</italic> KD cells were collected in RIPA buffer (25mM Tris-HCl pH 7.6, 150mM NaCl, 1% NP-40, 1% sodium deoxycholate, 0.1% SDS) (Thermo Fisher Scientific, cat. number 89901) supplemented with 1x protease inhibitor cocktail mix (MilliporeSigma, cat. number P8340). Lysates were sonicated briefly and incubated 30 min on ice. Lysates were spun at ~110,000 
                    <italic toggle="yes">x g</italic> for 15 min at 4&#x00b0;C and equal protein aliquots of the supernatants were analyzed by SDS-PAGE and western blot. BLUelf prestained protein ladder (GeneDireX, cat. number PM008-0500) was used.</p>
                <p>Western blots were performed with precast midi 4-20% Tris-Glycine polyacrylamide gels (Thermo Fisher Scientific, cat. number WXP42012BOX) ran with Tris/Glycine/SDS buffer (Bio-Rad, cat. number 1610772), loaded in Laemmli loading sample buffer (Thermo Fisher Scientific, cat. number AAJ61337AD) and transferred on nitrocellulose membranes. Proteins on the blots were visualized with Ponceau S staining (Thermo Fisher Scientific, cat. number BP103-10) which is scanned to show together with individual western blot. Blots were blocked with 5% milk for 1 hr, and antibodies were incubated O/N at 4&#x00b0;C with milk in TBS with 0,1% Tween 20 (TBST) (Cell Signalling Technology, cat. number 9997). Following three washes with TBST, the peroxidase conjugated secondary antibody was incubated at a dilution of ~0.2 &#x03bc;g/ml in TBST with 5% milk for 1 hr at room temperature followed by three washes with TBST. Membranes were incubated with Pierce ECL (Thermo Fisher Scientific, cat. number 32106) prior to detection with the iBright&#x2122; CL1500 Imaging System (Thermo Fisher Scientific, cat. number A44240).</p>
            </sec>
            <sec id="sec7">
                <title>Antibody screening by immunoprecipitation</title>
                <p>Antibody-bead conjugates were prepared by adding 2 &#x03bc;g of antibody to 500 &#x03bc;l of Pierce IP Lysis Buffer from Thermo Fisher Scientific (cat. number 87788) in a microcentrifuge tube, together with 30 &#x03bc;l of Dynabeads protein A- (for rabbit antibodies) or protein G- (for mouse antibodies) (Thermo Fisher Scientific, cat. number 10002D and 10004D, respectively). 30 &#x03bc;l of anti-Flag M2 magnetic beads (MilliporeSigma, cat. number M8823) were used for conjugation with Z-VCP-10**. Tubes were rocked for ~1 h at 4&#x00b0;C followed by two washes to remove unbound antibodies.</p>
                <p>U-2 OS WT lysates were collected in Pierce IP buffer (25 mM Tris-HCl pH 7.4, 150 mM NaCl, 1 mM EDTA, 1% NP-40 and 5% glycerol) supplemented with protease inhibitor. Lysates were rocked 30 min at 4&#x00b0;C and spun at 110,000 
                    <italic toggle="yes">x g</italic> for 15 min at 4&#x00b0;C. 0.5 ml aliquots at 1 mg/ml of lysate were incubated with an antibody-bead conjugate for ~1 h at 4&#x00b0;C. The unbound fractions were collected, and beads were subsequently washed three times with 1.0 ml of IP buffer and processed for SDS-PAGE and western blot on precast midi 4-20% Tris-Glycine polyacrylamide gels.</p>
            </sec>
            <sec id="sec8">
                <title>Antibody screening by immunofluorescence</title>
                <p>U-2 OS ctrl and 
                    <italic toggle="yes">VCP</italic> KD cells were labelled with a green and a far-red fluorescence dye, respectively (Thermo Fisher Scientific, cat. number C2925 and C34565). The nuclei were labelled with DAPI (Thermo Fisher Scientific, cat. Number D3571) fluorescent stain. Ctrl and KD cells were plated on 96-well plate with optically clear flat-bottom (Perkin Elmer, cat. number 6055300) as a mosaic and incubated for 24 hrs in a cell culture incubator at 37
                    <sup>o</sup>C, 5% CO
                    <sub>2</sub>. Cells were fixed in 4% paraformaldehyde (PFA) (VWR, cat. number 100503-917) in phosphate buffered saline (PBS) (Wisent, cat. number 311-010-CL). Cells were permeabilized in PBS with 0,1% Triton X-100 (Thermo Fisher Scientific, cat. number BP151-500) for 10 min at room temperature and blocked with PBS with 5% BSA, 5% goat serum (Gibco, cat. number 16210-064) and 0.01% Triton X-100 for 30 min at room temperature. Cells were incubated with IF buffer (PBS, 5% BSA, 0,01% Triton X-100) containing the primary VCP antibodies overnight at 4&#x00b0;C. Cells were then washed 3 &#x00d7; 10 min with IF buffer and incubated with corresponding Alexa Fluor 555-conjugated secondary antibodies in IF buffer at a dilution of 1.0 &#x03bc;g/ml for 1 hr at room temperature with DAPI. Cells were washed 3 &#x00d7; 10 min with IF buffer and once with PBS.</p>
                <p>Images were acquired on an ImageXpress micro confocal high-content microscopy system (Molecular Devices), using a 20x NA 0.95 water immersion objective and scientific CMOS cameras, equipped with 395, 475, 555 and 635 nm solid state LED lights (lumencor Aura III light engine) and bandpass filters to excite DAPI, Cellmask Green, Alexa-555 and Cellmask Red, respectively. Images had pixel sizes of 0.68 x 0.68 microns, and a z-interval of 4 microns. For analysis and visualization, shading correction (shade only) was carried out for all images. Then, maximum intensity projections were generated using 3 z-slices. Segmentation was carried out separately on maximum intensity projections of Cellmask channels using CellPose 1.0, and masks were used to generate outlines and for intensity quantification.
                    <sup>
                        <xref ref-type="bibr" rid="ref17">17</xref>
                    </sup> Figures were assembled with Adobe Illustrator.</p>
            </sec>
        </sec>
    </body>
    <back>
        <sec id="sec11" sec-type="data-availability">
            <title>Data availability</title>
            <sec id="sec12">
                <title>Underlying data</title>
                <p>Zenodo: Dataset for the VCP antibody screening study, 
                    <ext-link ext-link-type="uri" xlink:href="https://doi.org/10.5281/zenodo.16898393">https://doi.org/10.5281/zenodo.16898393</ext-link>.
                    <sup>
                        <xref ref-type="bibr" rid="ref18">18</xref>
                    </sup>
                </p>
                <p>Data are available under the terms of the 
                    <ext-link ext-link-type="uri" xlink:href="https://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution 4.0 International license</ext-link> (CC-BY 4.0).</p>
            </sec>
        </sec>
        <ack>
            <title>Acknowledgment</title>
            <p>We would like to thank the NeuroSGC/YCharOS/EDDU collaborative group for their important contribution to the creation of an open scientific ecosystem of antibody manufacturers and KO cell line suppliers, for the development of community-agreed protocols, and for their shared ideas, resources, and collaboration. Members of the group can be found below. We would also like to thank the Advanced BioImaging Facility (ABIF) consortium for their image analysis pipeline development and conduction (RRID:SCR_017697). Members of each group can be found below.</p>
            <p>NeuroSGC/YCharOS/EDDU collaborative group: Thomas M. Durcan, Aled M. Edwards, Peter S. McPherson, Chetan Raina and Wolfgang Reintsch.</p>
            <p>ABIF consortium: Claire M. Brown and Joel Ryan.</p>
            <p>Thank you to the Structural Genomics Consortium, a registered charity (no. 1097737), for your support on this project. The Structural Genomics Consortium receives funding from Bayer AG, Boehringer Ingelheim, Bristol-Myers Squibb, Genentech, Genome Canada through Ontario Genomics Institute (grant no. OGI-196), the EU and EFPIA through the Innovative Medicines Initiative 2 Joint Undertaking (EUbOPEN grant no. 875510), Janssen, Merck KGaA (also known as EMD in Canada and the United States), Pfizer and Takeda.</p>
        </ack>
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                    <pub-id pub-id-type="pmid">33318659</pub-id>
                    <pub-id pub-id-type="doi">10.1038/s41592-020-01018-x</pub-id>
                </mixed-citation>
            </ref>
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                <mixed-citation publication-type="data">
                    <person-group person-group-type="author">

                        <name name-style="western">
                            <surname>Laflamme</surname>
                            <given-names>C</given-names>
                        </name>
</person-group>:
                    <data-title>Dataset for the VCP antibody screening study.</data-title>[Data set].
                    <source>

                        <italic toggle="yes">Zenodo.</italic>
</source>
                    <year>2025</year>.
                    <pub-id pub-id-type="doi">10.5281/zenodo.16898393</pub-id>
                </mixed-citation>
            </ref>
        </ref-list>
    </back>
    <sub-article article-type="reviewer-report" id="report416174">
        <front-stub>
            <article-id pub-id-type="doi">10.5256/f1000research.186850.r416174</article-id>
            <title-group>
                <article-title>Reviewer response for version 1</article-title>
            </title-group>
            <contrib-group>
                <contrib contrib-type="author">
                    <name>
                        <surname>Bowman</surname>
                        <given-names>Karen</given-names>
                    </name>
                    <xref ref-type="aff" rid="r416174a1">1</xref>
                    <role>Referee</role>
                    <uri content-type="orcid">https://orcid.org/0009-0002-9288-7106</uri>
                </contrib>
                <aff id="r416174a1">
                    <label>1</label>University of Leicester, Leicester, England, UK</aff>
            </contrib-group>
            <author-notes>
                <fn fn-type="conflict">
                    <p>
                        <bold>Competing interests: </bold>No competing interests were disclosed.</p>
                </fn>
            </author-notes>
            <pub-date pub-type="epub">
                <day>22</day>
                <month>10</month>
                <year>2025</year>
            </pub-date>
            <permissions>
                <copyright-statement>Copyright: &#x00a9; 2025 Bowman K</copyright-statement>
                <copyright-year>2025</copyright-year>
                <license xlink:href="https://creativecommons.org/licenses/by/4.0/">
                    <license-p>This is an open access peer review report distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.</license-p>
                </license>
            </permissions>
            <related-article ext-link-type="doi" id="relatedArticleReport416174" related-article-type="peer-reviewed-article" xlink:href="10.12688/f1000research.169502.1"/>
            <custom-meta-group>
                <custom-meta>
                    <meta-name>recommendation</meta-name>
                    <meta-value>approve</meta-value>
                </custom-meta>
            </custom-meta-group>
        </front-stub>
        <body>
            <p>The study involved characterisation of sixteen commercial antibodies, from eight different suppliers, for the Valosin-containing protein (VCP) for use in western blot, immunoprecipitation, and immunofluorescence. The study formed part of the wider YCharOS collaboration to characterise commercial antibodies for human proteins using standardised protocols with the intention of improving antibody reproducibility issues. As a Data Note, it allows the direct comparison of the performance of commercially available antibodies to VCP protein to aid scientists in choosing the most appropriate antibody for their studies. For example, in understanding the mechanisms of VCP dysfunction. This comparison would be of particular use in the fields of neuroscience and neurodegenerative diseases.</p>
            <p> A committee of industry and academic representatives have endorsed the platform used, and the protocols used are consistent with those in general use. The platform consisted of identification of a human cell line suitable for antibody characterisation studies i.e., with adequate levels of the protein to generate a measurable signal. They found that the commercially available U-2 OS cell line expresses VCP transcript at a level above the average range of cancer cells analysed, and therefore, was a logical choice for their study. Knockdown of the target gene using siRNA technology was used to provide appropriate negative control cells. The final step was a series of antibody characterisation procedures, limited to the most common research uses of antibodies. The interpretation of the results is left to the reader, with the study providing unbiased guidance. However, it gave some indication of the optimum dilutions of commercial antibodies to use. Limitations of the study are clearly stated.</p>
            <p> The summary Table 4, with illustrations to assess antibody performance in western blot, immunoprecipitation and immunofluorescence, is very helpful.</p>
            <p> There is a typo in sentence two. Insides should probably be insights. The calculated molecular weight of VCP, 89 kDa, is only mentioned in the legend of Figure 1, but it would be useful to have it in the text as well.</p>
            <p> The study is a useful starting point when choosing the most appropriate antibody for study of the VCP protein.</p>
            <p>Are sufficient details of methods and materials provided to allow replication by others?</p>
            <p>Yes</p>
            <p>Is the rationale for creating the dataset(s) clearly described?</p>
            <p>Yes</p>
            <p>Are the datasets clearly presented in a useable and accessible format?</p>
            <p>Yes</p>
            <p>Are the protocols appropriate and is the work technically sound?</p>
            <p>Yes</p>
            <p>Reviewer Expertise:</p>
            <p>drug discovery, biochemistry, cell biology.</p>
            <p>I confirm that I have read this submission and believe that I have an appropriate level of expertise to confirm that it is of an acceptable scientific standard.</p>
        </body>
    </sub-article>
    <sub-article article-type="reviewer-report" id="report416175">
        <front-stub>
            <article-id pub-id-type="doi">10.5256/f1000research.186850.r416175</article-id>
            <title-group>
                <article-title>Reviewer response for version 1</article-title>
            </title-group>
            <contrib-group>
                <contrib contrib-type="author">
                    <name>
                        <surname>Moshinsky</surname>
                        <given-names>Deborah</given-names>
                    </name>
                    <xref ref-type="aff" rid="r416175a1">1</xref>
                    <role>Referee</role>
                    <uri content-type="orcid">https://orcid.org/0009-0000-4909-7489</uri>
                </contrib>
                <aff id="r416175a1">
                    <label>1</label>Institute for Protein Innovation, Boston, Massachusetts, USA</aff>
            </contrib-group>
            <author-notes>
                <fn fn-type="conflict">
                    <p>
                        <bold>Competing interests: </bold>No competing interests were disclosed.</p>
                </fn>
            </author-notes>
            <pub-date pub-type="epub">
                <day>3</day>
                <month>10</month>
                <year>2025</year>
            </pub-date>
            <permissions>
                <copyright-statement>Copyright: &#x00a9; 2025 Moshinsky D</copyright-statement>
                <copyright-year>2025</copyright-year>
                <license xlink:href="https://creativecommons.org/licenses/by/4.0/">
                    <license-p>This is an open access peer review report distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.</license-p>
                </license>
            </permissions>
            <related-article ext-link-type="doi" id="relatedArticleReport416175" related-article-type="peer-reviewed-article" xlink:href="10.12688/f1000research.169502.1"/>
            <custom-meta-group>
                <custom-meta>
                    <meta-name>recommendation</meta-name>
                    <meta-value>approve</meta-value>
                </custom-meta>
            </custom-meta-group>
        </front-stub>
        <body>
            <p>The authors tested 16 commercially available antibodies to VCP (valosin-containing protein) for their ability to detect the protein in Western Blot, Immunoprecipitation (IP), and Immunofluorescence (IF).&#x00a0; As negative controls, they used cells with VCP knocked down by siRNA.&#x00a0; Results of the Western analysis were shown using lysate from U-2 OS cells with and without siRNA knockdown (KD), and a number of antibodies indicated staining of an ~85KD protein only in cells where VCP was expressed.&#x00a0; Similar comparative experiments were performed for IP and IF, where lysates or cells from U-2 OS cells were compared to those from the KD cells.&#x00a0; At least 1 antibody of the 16 was found to recognize a protein in U-2 OS cells that was not present in KD cells, implying that the antibodies are recognizing VCP specifically.</p>
            <p>Are sufficient details of methods and materials provided to allow replication by others?</p>
            <p>Yes</p>
            <p>Is the rationale for creating the dataset(s) clearly described?</p>
            <p>Yes</p>
            <p>Are the datasets clearly presented in a useable and accessible format?</p>
            <p>Yes</p>
            <p>Are the protocols appropriate and is the work technically sound?</p>
            <p>Yes</p>
            <p>Reviewer Expertise:</p>
            <p>Antibody characterization and validation</p>
            <p>I confirm that I have read this submission and believe that I have an appropriate level of expertise to confirm that it is of an acceptable scientific standard.</p>
        </body>
    </sub-article>
</article>
