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Developing an Acidic Residue Reactive and Sulfoxide-Containing MS-Cleavable Homobifunctional Cross-Linker for Probing Protein Protein Interactions

机译:开发酸性残基反应性和含亚砜的MS可裂解的同双功能交联剂,用于探测蛋白质相互作用。

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Cross-linking mass Spectrometry (XL-MS) has become a powerful strategy for defining protein protein interactions and elucidating architectures of large protein complexeS. However, one of the inherent challenges in MS analysis of cross-linked peptides is their unambiguous identification. To facilitate this process, we have previously developed a series of amine-reactive sulfoxide-containing MS-cleavable cross-linkers. These MS-cleavable reagents have allowed us to establish a common robust XL-MS workflow that enables fast and accurate identification of cross-linked peptides using multistage tandem mass spectrometry (MSn). Although amine-reactive reagents targeting lysine residues have been Successful, it remains difficult to characterize protein interaction interfaces with little or no lysine residues. To expand the coverage of protein' interaction regions, we present here the development of a new acidic residue-targeting sulfoxide-containing MS-cleavable homobiftmctional Cross-linker, dihydrazide sulfoxide (DHSO). We demonstrate that DHSO cross-linked peptides display the same predictable and characteristic fragmentation pattern during collision induced dissociation as amine-reactive sulfoxide-containing MS-cleavable cross-linked peptides, thus permitting their simplified analysis andnnatnbiguous identification by MSn. Additionally, we show that DHSO can provide complementary data to amine-reactive reagents. collectively, this work not only enlarges the range of the application of XL-MS approaches but also further demonstrates the robustness and applicability of sulfoxide-based MS, deavability in conjunction with various cross-linking chemistries.
机译:交联质谱法(XL-MS)已成为定义蛋白相互作用和阐明大蛋白复合物结构的有力策略。然而,对交联肽段进行质谱分析时固有的挑战之一是它们的明确鉴定。为促进此过程,我们先前已经开发了一系列含胺反应性亚砜的MS可裂解交联剂。这些可被MS裂解的试剂使我们能够建立通用的稳健XL-MS工作流程,该流程可使用多级串联质谱(MSn)快速准确地鉴定交联肽。尽管靶向赖氨酸残基的胺反应试剂已经成功,但仍然难以表征具有很少或没有赖氨酸残基的蛋白质相互作用界面。为了扩大蛋白质相互作用区域的覆盖范围,我们在这里介绍了一种新型的酸性残基靶向亚砜,含MS可裂解的同质交联剂,二酰肼亚砜(DHSO)。我们证明,DHSO交联肽在碰撞诱导的解离过程中显示出与胺反应性亚砜含MS可裂解的交联肽相同的可预测和特征性片段化模式,从而允许其简化的分析和由MSn的歧义鉴定。此外,我们表明DHSO可以为胺反应性试剂提供补充数据。总的来说,这项工作不仅扩大了XL-MS方法的应用范围,而且进一步证明了基于亚砜的MS的稳健性和适用性,结合各种交联化学方法的可降解性。

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