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Identification of Protein-Protein Interactions and Topologies in Living Cells with Chemical Cross-linking and Mass Spectrometry*S⃞

机译:化学交联和质谱法鉴定活细胞中的蛋白质-蛋白质相互作用和拓扑结构*S⃞

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摘要

We present results from a novel strategy that enables concurrent identification of protein-protein interactions and topologies in living cells without specific antibodies or genetic manipulations for immuno-/affinity purifications. The strategy consists of (i) a chemical cross-linking reaction: intact cell labeling with a novel class of chemical cross-linkers, protein interaction reporters (PIRs); (ii) two-stage mass spectrometric analysis: stage 1 identification of PIR-labeled proteins and construction of a restricted database by two-dimensional LC/MSMS and stage 2 analysis of PIR-labeled peptides by multiplexed LC/FTICR-MS; and (iii) data analysis: identification of cross-linked peptides and proteins of origin using accurate mass and other constraints. The primary advantage of the PIR approach and distinction from current technology is that protein interactions together with topologies are detected in native biological systems by stabilizing protein complexes with new covalent bonds while the proteins are present in the original cellular environment. Thus, weak or transient interactions or interactions that require properly folded, localized, or membrane-bound proteins can be labeled and identified through the PIR approach. This strategy was applied to Shewanella oneidensis bacterial cells, and initial studies resulted in identification of a set of protein-protein interactions and their contact/binding regions. Furthermore most identified interactions involved membrane proteins, suggesting that the PIR approach is particularly suited for studies of membrane protein-protein interactions, an area under-represented with current widely used approaches.
机译:我们目前提出了一种新颖的策略,可以同时识别活细胞中的蛋白质-蛋白质相互作用和拓扑结构,而无需特异性抗体或免疫/亲和纯化的基因操作。该策略包括(i)化学交联反应:使用一类新型化学交联剂,蛋白质相互作用报告物(PIR)完整地标记细胞; (ii)两阶段质谱分析:第一阶段通过二维LC / MSMS鉴定PIR标记的蛋白质和构建限制性数据库,第二阶段通过多重LC / FTICR-MS分析PIR标记的肽; (iii)数据分析:使用准确的质量和其他限制条件鉴定出交联的肽和蛋白质来源。 PIR方法的主要优点是与现有技术的区别在于,当蛋白质存在于原始细胞环境中时,通过用新的共价键稳定蛋白质复合物,可以在天然生物系统中检测到蛋白质相互作用和拓扑结构。因此,可以通过PIR方法标记和识别弱相互作用或短暂相互作用或需要正确折叠,定位或膜结合蛋白的相互作用。该策略被应用于沙瓦氏菌(Shewanella oneidensis)细菌细胞,初步研究导致鉴定出一组蛋白质-蛋白质相互作用及其接触/结合区域。此外,大多数已鉴定的相互作用涉及膜蛋白,这表明PIR方法特别适合于膜蛋白-蛋白相互作用的研究,这是当前广泛使用的方法所不能代表的领域。

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