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首页> 外文期刊>Analytical chemistry >Developing a Multiplexed Quantitative Cross-Linking Mass Spectrometry Platform for Comparative Structural Analysis of Protein Complexes
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Developing a Multiplexed Quantitative Cross-Linking Mass Spectrometry Platform for Comparative Structural Analysis of Protein Complexes

机译:开发用于蛋白质复合物比较结构分析的多重定量交联质谱平台

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摘要

Cross-linking mass spectrometry (XL-MS) represents a recently popularized hybrid methodology for defining protein protein interactions (PPIs) and analyzing structures of large protein assemblies. In particular, XL-MS strategies have been demonstrated to be effective in elucidating molecular details of PPIs at the peptide resolution, providing a complementary set of structural data that can be utilized to refine existing complex structures or direct de novo modeling of unknown protein structures. To study structural and interaction dynamics of protein complexes, quantitative cross-linking mass spectrometry (QXL-MS) strategies based on isotope-labeled cross-linkers have been developed. Although successful, these approaches are mostly limited to pairwise comparisons. In order to establish a robust workflow enabling comparative analysis of multiple cross-linked samples simultaneously, we have developed a multiplexed QXL-MS strategy, namely, QMIX (Quantitation of Multiplexed; Isobaric-labeled cross (X)-linked peptides) by integrating MS-cleavable cross-linkers with isobaric labeling reagents. This Study has established a new analytical platform for quantitative analysis of cross-linked peptides, which can be directly applied for multiplexed comparisons of the conformational dynamics of protein complexes and PPIs at the proteome scale in future studies.
机译:交联质谱法(XL-MS)代表了最近流行的定义蛋白质蛋白质相互作用(PPI)和分析大型蛋白质装配体结构的混合方法。特别是,已证明XL-MS策略可有效地阐明肽分辨率下PPI的分子细节,提供了一组互补的结构数据,可用于完善现有复杂结构或对未知蛋白质结构进行直接从头建模。为了研究蛋白质复合物的结构和相互作用动力学,已经开发了基于同位素标记的交联剂的定量交联质谱(QXL-MS)策略。尽管成功,但这些方法主要限于成对比较。为了建立可同时比较多个交联样品的比较分析的强大工作流程,我们通过整合质谱技术开发了一种多重QXL-MS策略,即QMIX(多重定量;等压标记的交叉(X)链接肽)等压标记试剂可裂解的交联剂。这项研究建立了一个新的分析平台,用于定量分析交联的肽,可以在未来的研究中直接用于蛋白质组规模的蛋白质复合物和PPI构象动力学的多重比较。

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