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Use of a Combination of Isotopically Coded Cross-Linkers and Isotopically Coded N-Terminal Modification Reagents for Selective Identification of Inter-peptide Crosslinks

机译:同位素编码的交联剂和同位素编码的N末端修饰试剂的组合用于选择性鉴定肽间交联的用途

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摘要

Cross-linking combined with mass spectrometry has great potential for determining three-dimensional structures of proteins and protein assemblies. One of the main analytical challenges of this method is the specific detection and identification of the inter-peptide crosslinks in the peptide mixture after enzymatic digestion of the cross-linked protein complex. These inter-peptide crosslinks are important because they provide the critical distance information needed for structural proteomics studies. In this paper, we demonstrate the use of isotopically coded N-terminal modification (ICNTM) in combination with isotopically coded cross-linkers (ICCL) for specific detection of inter-peptide crosslinks. Inter-peptide crosslinks contain two amino termini, compared to one in the case of free peptides, dead-end crosslinks, or intra-peptide crosslinks. Therefore, N-terminal modification with a 1:1 mixture of heavy and light isotopically coded reagents produces inter-peptide crosslinks with a distinct isotopic signature (a 1:2:1 ratio). Modification also occurs at the epsilon-amino groups of non-cross-linked lysine residues, resulting in two modifications per free lysine-containing peptide. However, if ICCL and ICNTM are used together, inter-peptide crosslinks can be distinguished from free lysine-containing peptides. Specialized software has also been developed for the analysis of ICCL + ICNTM experimental data. This procedure, combined with software for data analysis, provides a simple and rapid method for specific detection of inter-peptide crosslinks.
机译:交联与质谱联用在确定蛋白质和蛋白质装配体的三维结构方面具有巨大潜力。该方法的主要分析挑战之一是在酶切消化交联蛋白复合物后,特异性检测和鉴定肽混合物中的肽间交联。这些肽间交联很重要,因为它们提供了结构蛋白质组学研究所需的关键距离信息。在本文中,我们证明了同位素编码的N末端修饰(ICNTM)与同位素编码的交联剂(ICCL)结合用于特异性检测肽间交联。肽间交联包含两个氨基末端,而游离肽,死端交联或肽内交联则为一个。因此,用重和轻同位素编码试剂的1:1混合物进行N末端修饰会产生具有独特同位素特征(比率为1:2:1)的肽间交联。修饰还发生在非交联的赖氨酸残基的ε-氨基上,导致每个游离的含赖氨酸的肽有两个修饰。但是,如果一起使用ICCL和ICNTM,则可以将肽间交联与含有游离赖氨酸的肽区分开。还开发了专用软件来分析ICCL + ICNTM实验数据。该程序与用于数据分析的软件相结合,为特异性检测肽间交联键提供了一种简单而快速的方法。

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