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首页> 外文期刊>Molecular & cellular proteomics: MCP >Peptide level immunoaffinity enrichment enhances ubiquitination site identification on individual proteins
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Peptide level immunoaffinity enrichment enhances ubiquitination site identification on individual proteins

机译:肽水平的免疫亲和富集可增强单个蛋白质上的泛素化位点鉴定

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Ubiquitination is a process that involves the covalent attachment of the 76-residue ubiquitin protein through its C-terminal di-glycine (GG) to lysine (K) residues on substrate proteins. This post-translational modification elicits a wide range of functional consequences including targeting proteins for proteasomal degradation, altering subcellular trafficking events, and facilitating protein-protein interactions. A number of methods exist for identifying the sites of ubiquitination on proteins of interest, including site-directed mutagenesis and affinity-purification mass spectrometry (AP-MS). Recent publications have also highlighted the use of peptide-level immunoaffinity enrichment of K-GG modified peptides from whole cell lysates for global characterization of ubiquitination sites. Here we investigated the utility of this technique for focused mapping of ubiquitination sites on individual proteins. For a series of membrane-associated and cytoplasmic substrates including erbB-2 (HER2), Dishevelled-2 (DVL2), and T cell receptor α (TCRα), we observed that K-GG peptide immunoaffinity enrichment consistently yielded additional ubiquitination sites beyond those identified in protein level AP-MS experiments. To assess this quantitatively, SILAC-labeled lysates were prepared and used to compare the abundances of individual K-GG peptides from samples prepared in parallel. Consistently, K-GG peptide immunoaffinity enrichment yielded greater than fourfold higher levels of modified peptides than AP-MS approaches. Using this approach, we went on to characterize inducible ubiquitination on multiple members of the T-cell receptor complex that are functionally affected by endoplasmic reticulum (ER) stress. Together, these data demonstrate the utility of immunoaffinity peptide enrichment for single protein ubiquitination site analysis and provide insights into the ubiquitination of HER2, DVL2, and proteins in the T-cell receptor complex. Molecular & Cellular Proteomics 13: 10.1074/ mcp.M113.031062, 145-156, 2014.
机译:泛素化是一个过程,涉及76个残基的泛素蛋白通过其C端双甘氨酸(GG)与底物蛋白上的赖氨酸(K)残基共价连接。这种翻译后修饰引起广泛的功能性后果,包括将蛋白质靶向用于蛋白酶体降解,改变亚细胞运输事件以及促进蛋白质-蛋白质相互作用。存在许多用于鉴定目标蛋白上泛素化位点的方法,包括定点诱变和亲和纯化质谱(AP-MS)。最近的出版物还强调了使用全细胞裂解液中的K-GG修饰肽进行肽级免疫亲和富集,以全面表征泛素化位点。在这里,我们研究了该技术对单个蛋白上泛素化位点集中定位的实用性。对于包括erbB-2(HER2),Dishevelled-2(DVL2)和T细胞受体α(TCRα)在内的一系列膜相关底物和细胞质底物,我们观察到K-GG肽免疫亲和力富集性不断产生了除那些之外的泛素化位点。在蛋白质水平的AP-MS实验中鉴定。为了定量评估,制备了SILAC标记的裂解物,并用于比较平行制备的样品中单个K-GG肽的丰度。一致地,与AP-MS方法相比,K-GG肽免疫亲和富集产生的修饰肽水平高出四倍。使用这种方法,我们继续在功能受内质网(ER)应力影响的T细胞受体复合物的多个成员上表征诱导型泛素化。总之,这些数据证明了免疫亲和肽富集对单个蛋白质泛素化位点分析的实用性,并提供了对HER2,DVL2和T细胞受体复合物中蛋白质泛素化的见解。分子与细胞蛋白质组学13:10.1074 / mcp.M113.031062,145-156,2014。

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