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关联气相与溶液构象:来自无序蛋白质的经验教训。

Relating gas phase to solution conformations: Lessons from disordered proteins.

作者信息

Beveridge Rebecca, Phillips Ashley S, Denbigh Laetitia, Saleem Hassan M, MacPhee Cait E, Barran Perdita E

机构信息

The Michael Barber Centre for Collaborative Mass Spectrometry, The School of Chemistry, Manchester Institute for Biotechnology, University of Manchester, Manchester, UK.

Waters Corporation, Wilmslow, UK.

出版信息

Proteomics. 2015 Aug;15(16):2872-83. doi: 10.1002/pmic.201400605. Epub 2015 Jun 5.

Abstract

In recent years both mass spectrometry (MS) and ion mobility mass spectrometry (IM-MS) have been developed as techniques with which to study proteins that lack a fixed tertiary structure but may contain regions that form secondary structure elements transiently, namely intrinsically disordered proteins (IDPs). IM-MS is a suitable method for the study of IDPs which provides an insight to conformations that are present in solution, potentially enabling the analysis of lowly populated structural forms. Here, we describe the IM-MS data of two IDPs; α-Synuclein (α-Syn) which is implicated in Parkinson's disease, and Apolipoprotein C-II (ApoC-II) which is involved in cardiovascular diseases. We report an apparent discrepancy in the way that ApoC-II behaves in the gas phase. While most IDPs, including α-Syn, present in many charge states and a wide range of rotationally averaged collision cross sections (CCSs), ApoC-II presents in just four charge states and a very narrow range of CCSs, independent of solution conditions. Here, we compare MS and IM-MS data of both proteins, and rationalise the differences between the proteins in terms of different ionisation processes which they may adhere to.

摘要

近年来,质谱法(MS)和离子淌度质谱法(IM-MS)都已发展成为研究缺乏固定三级结构但可能含有瞬时形成二级结构元件区域的蛋白质的技术,即内在无序蛋白质(IDP)。IM-MS是研究IDP的一种合适方法,它能深入了解溶液中存在的构象,有可能实现对低丰度结构形式的分析。在此,我们描述了两种IDP的IM-MS数据;与帕金森病有关的α-突触核蛋白(α-Syn),以及与心血管疾病有关的载脂蛋白C-II(ApoC-II)。我们报告了ApoC-II在气相中的行为方式存在明显差异。虽然大多数IDP,包括α-Syn,呈现多种电荷状态和广泛的旋转平均碰撞截面(CCS)范围,但ApoC-II仅呈现四种电荷状态和非常窄的CCS范围,且与溶液条件无关。在此,我们比较了这两种蛋白质的MS和IM-MS数据,并根据它们可能遵循的不同电离过程来解释蛋白质之间的差异。

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