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SUMO抗体验证

SUMO Antibody Validation.

作者信息

Garvin Alexander J

机构信息

SUMO Biology Lab, School of Molecular and Cellular Biology, Astbury Centre for Structural Molecular Biology, Faculty of Biological Sciences, University of Leeds, Leeds, West Yorkshire, UK.

出版信息

Methods Mol Biol. 2025;2957:17-30. doi: 10.1007/978-1-0716-4710-3_2.

Abstract

Tools to detect endogenous SUMOylation are critical for capturing and analyzing SUMOylation dynamics. Proteome-wide analysis of SUMOylation has provided invaluable insight into our understanding of global patterns of SUMOylation under various developmental and stressor conditions. Experimental validation of SUMOylation is still essential for a detailed mechanistic understanding of SUMOylation of individual proteins. In most cases, antibodies raised to SUMO are the tools of choice. Several high-quality monoclonals and their hybridomas (8A2 to SUMO2/3, 21C7 and 76-86 for SUMO1) have been made widely available to the research community (Becker et al., Nat Struct Mol Biol 20:525-531, 2013). These tools are helpful in identifying individual substrates and as affinity reagents for global proteomic SUMOylome profiling. In addition to these tools, many SUMO1-4 antibodies are commercially available, including almost 100 monoclonal antibodies (MAbs). In testing 24 SUMO1-4 MAbs across multiple detection formats (Garvin et al., Sci Rep:12, 2022), we uncovered several poorly specific published MAbs, including SUMO4 MAbs, that robustly cross-react with SUMO2/3 and vice versa. Inconsistencies between different SUMO MAbs were prevalent in their ability to detect monomeric, conjugated, and polymeric forms of SUMO. The ability to detect changes in SUMOylation across stress conditions also varied widely between SUMO MAbs. As each SUMO MAb tested had strengths and weaknesses, researchers must be aware of these caveats when selecting antibodies for their research needs. This chapter provides protocols for validating SUMO antibodies. As many vendors provide little experimental validation for their antibodies, these validations are critical to prevent wasting precious time and resources for researchers. The proper validation of antibodies is also increasingly a prerequisite for research funding agencies, publishing, and promoting reproducibility in research.

摘要

检测内源性SUMO化修饰的工具对于捕捉和分析SUMO化修饰动态至关重要。对SUMO化修饰进行全蛋白质组分析,为我们理解各种发育和应激条件下SUMO化修饰的全局模式提供了宝贵的见解。对SUMO化修饰进行实验验证对于详细了解单个蛋白质的SUMO化修饰机制仍然至关重要。在大多数情况下,针对SUMO产生的抗体是首选工具。几种高质量的单克隆抗体及其杂交瘤(针对SUMO2/3的8A2、针对SUMO1的21C7和76-86)已广泛提供给研究界(Becker等人,《自然结构与分子生物学》20:525-531,2013年)。这些工具有助于识别单个底物,并作为用于全局蛋白质组SUMO化修饰图谱分析的亲和试剂。除了这些工具外,许多SUMO1-4抗体也可商购,包括近100种单克隆抗体。在多种检测形式下测试24种SUMO1-4单克隆抗体时(Garvin等人,《科学报告》:12,2022年),我们发现了几种特异性较差的已发表单克隆抗体,包括SUMO4单克隆抗体,它们与SUMO2/3有强烈的交叉反应,反之亦然。不同SUMO单克隆抗体之间在检测SUMO的单体、共轭和聚合形式的能力上存在普遍差异。不同SUMO单克隆抗体在检测应激条件下SUMO化修饰变化的能力也有很大差异。由于所测试的每种SUMO单克隆抗体都有优缺点,研究人员在根据研究需求选择抗体时必须了解这些注意事项。本章提供了验证SUMO抗体的方案。由于许多供应商对其抗体提供的实验验证很少,这些验证对于避免研究人员浪费宝贵的时间和资源至关重要。正确验证抗体也日益成为研究资助机构、发表论文以及促进研究可重复性的前提条件。

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