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首页> 外文期刊>Journal of proteomics >Selective enrichment and identification of cross-linked peptides to study 3-D structures of protein complexes by mass spectrometry
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Selective enrichment and identification of cross-linked peptides to study 3-D structures of protein complexes by mass spectrometry

机译:选择性富集和鉴定交联肽以通过质谱研究蛋白质复合物的3-D结构

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摘要

Chemical cross-linking of protein complexes combined with mass spectrometry is a powerful approach to obtain 3-D structural information by revealing amino residues that are in close spatial proximity. To increase the efficiency of mass spectrometric analysis, we have demonstrated the selective enrichment of cross-linked peptides from the 350. kDa protein complex RNA polymerase (RNAP) from Bacillus subtilis. Bis(succinimidyl)-3-azidomethyl glutarate was used as a cross-linker along with an azide-reactive cyclooctyne-conjugated resin to capture target peptides. Subsequently released peptides were fractionated by strong cation exchange chromatography and subjected to LC-MS/MS. We mapped 10 different intersubunit and 24 intrasubunit cross-links by xComb database searching supplied with stringent criteria for confirmation of the proposed structure of candidate cross-linked peptides. The cross-links fit into a homology model of RNAP. Cross-links between β lobe 1 and the β' downstream jaw, and cross-links involving the N-terminal and C-terminal parts of the α subunits suggest conformational flexibility. The analytical strategy presented here can be applied to map protein. -protein interactions at the amino acid level in biological assemblies of similar complexity. Our approach enables the exploration of alternative peptide fragmentation techniques that may further facilitate cross-link analysis.
机译:蛋白质复合物的化学交联与质谱联用是一种强大的方法,可通过揭示空间上紧密相邻的氨基残基来获得3-D结构信息。为了提高质谱分析的效率,我们已经证明了来自枯草芽孢杆菌的350. kDa蛋白复合物RNA聚合酶(RNAP)的选择性富集。谷氨酸双(琥珀酰亚胺基)-3-叠氮基甲基酯与叠氮化物反应性环辛炔共轭树脂一起用作交联剂,以捕获目标肽。随后释放的肽通过强阳离子交换色谱分离,并进行LC-MS / MS。我们通过提供严格标准的xComb数据库搜索来映射10个不同的亚基和24个亚基内交联,以确认候选交联肽的拟议结构。所述交联适合RNAP的同源性模型。 β瓣1和β'下游颚之间的交联以及涉及α亚基的N端和C端部分的交联提示构象柔性。此处介绍的分析策略可以应用于蛋白质图谱。复杂程度相似的生物装配中氨基酸水平的蛋白质相互作用。我们的方法使探索替代肽片段化技术成为可能,这可能进一步促进交联分析。

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