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高效稳健的蛋白质组泛抗体交联质谱法

Efficient and robust proteome-wide approaches for cross-linking mass spectrometry.

机构信息

Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, University of Utrecht, Utrecht, the Netherlands.

Netherlands Proteomics Center, Utrecht, the Netherlands.

出版信息

Nat Protoc. 2018 Dec;13(12):2964-2990. doi: 10.1038/s41596-018-0074-x.

Abstract

Cross-linking mass spectrometry (XL-MS) has received considerable interest, owing to its potential to investigate protein-protein interactions (PPIs) in an unbiased fashion in complex protein mixtures. Recent developments have enabled the detection of thousands of PPIs from a single experiment. A unique strength of XL-MS, in comparison with other methods for determining PPIs, is that it provides direct spatial information for the detected interactions. This is accomplished by the use of bifunctional cross-linking molecules that link two amino acids in close proximity with a covalent bond. Upon proteolytic digestion, this results in two newly linked peptides, which are identifiable by MS. XL-MS has received the required boost to tackle more-complex samples with recent advances in cross-linking chemistry with MS-cleavable or reporter-based cross-linkers and faster, more sensitive and more versatile MS platforms. This protocol provides a detailed description of our optimized conditions for a full-proteome native protein preparation followed by cross-linking using the gas-phase cleavable cross-linking reagent disuccinimidyl sulfoxide (DSSO). Following cross-linking, we demonstrate extensive sample fractionation and substantially simplified data analysis with XlinkX in Proteome Discoverer, as well as subsequent protein structure investigations with DisVis and HADDOCK. This protocol produces data of high confidence and can be performed within ~10 d, including structural investigations.

摘要

交联质谱 (XL-MS) 因其能够在复杂的蛋白质混合物中以无偏倚的方式研究蛋白质-蛋白质相互作用 (PPIs),而受到了相当多的关注。最近的发展使得能够从单个实验中检测到数千种 PPI。与其他确定 PPI 的方法相比,XL-MS 的一个独特优势是它为检测到的相互作用提供了直接的空间信息。这是通过使用双功能交联分子来实现的,该分子通过共价键将两个临近的氨基酸连接在一起。在蛋白酶消化后,这会产生两个新连接的肽,通过 MS 可以识别这些肽。随着交联化学与 MS 可切割或基于报告的交联剂的最新进展,以及更快、更灵敏和更通用的 MS 平台的发展,XL-MS 已经获得了应对更复杂样本的必要推动力。本协议提供了我们优化的条件的详细描述,用于对完整蛋白质组进行天然蛋白质制备,然后使用气相可切割交联试剂二琥珀酰亚胺基砜 (DSSO) 进行交联。交联后,我们展示了广泛的样品分级,并在 Proteome Discoverer 中使用 XlinkX 大大简化了数据分析,以及随后使用 DisVis 和 HADDOCK 进行蛋白质结构研究。该协议产生的具有高度可信度的数据,整个过程可以在 10 天内完成,包括结构研究。

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