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α-突触核蛋白的构象动力学:来自质谱分析的见解

Conformational dynamics of α-synuclein: insights from mass spectrometry.

作者信息

Phillips Ashley S, Gomes Alexandre F, Kalapothakis Jason M D, Gillam Jay E, Gasparavicius Jonas, Gozzo Fabio C, Kunath Tilo, MacPhee Cait, Barran Perdita E

机构信息

Manchester Institute of Biotechnology, University of Manchester, Manchester, M1 7DN, UK.

出版信息

Analyst. 2015 May 7;140(9):3070-81. doi: 10.1039/c4an02306d. Epub 2015 Mar 10.

Abstract

The aggregation and deposition of α-synuclein in Lewy bodies is associated with the progression of Parkinson's disease. Here, Mass Spectrometry (MS) is used in combination with Ion Mobility (IM), chemical crosslinking and Electron Capture Dissociation (ECD) to probe transient structural elements of α-synuclein and its oligomers. Each of these reveals different aspects of the conformational heterogeneity of this 14 kDa protein. IM-MS analysis indicates that this protein is highly disordered, presenting in positive ionisation mode with a charge state range of 5 ≤z≤ 21 for the monomer, along with a collision cross section range of ∼1600 Å(2). Chemical crosslinking applied in conjunction with IM-MS captures solution phase conformational families enabling comparison with those exhibited in the gas phase. Crosslinking IM-MS identifies 3 distinct conformational families, Compact (∼1200 Å(2)), Extended (∼1500 Å(2)) and Unfolded (∼2350 Å(2)) which correlate with those observed in solution. ECD-Fourier Transform-Ion Cyclotron Resonance Mass Spectrometry (ECD-FT-ICR MS) highlights the effect of pH on α-synuclein structure, identifying the conformational flexibility of the N and C termini as well as providing evidence for structure in the core and at times the C terminus. A hypothesis is proposed for the variability displayed in the structural rearrangement of α-synuclein following changes in solution pH. Following a 120 h aggregation time course, we observe an increase in the ratio of dimer to monomer, but no gross conformational changes in either, beyond the significant variations that are observed day-to-day from this conformationally dynamic protein.

摘要

路易小体中α-突触核蛋白的聚集和沉积与帕金森病的进展相关。在此,质谱(MS)与离子淌度(IM)、化学交联和电子捕获解离(ECD)结合使用,以探测α-突触核蛋白及其寡聚体的瞬时结构元件。这些方法中的每一种都揭示了这种14 kDa蛋白质构象异质性的不同方面。IM-MS分析表明,该蛋白质高度无序,在正离子化模式下,单体的电荷态范围为5≤z≤21,碰撞截面范围约为1600 Å(2)。与IM-MS结合应用的化学交联捕获溶液相构象家族,从而能够与气相中显示的构象进行比较。交联IM-MS识别出3个不同的构象家族,紧密型(约1200 Å(2))、伸展型(约1500 Å(2))和未折叠型(约2350 Å(2)),它们与在溶液中观察到的构象相关。ECD-傅里叶变换-离子回旋共振质谱(ECD-FT-ICR MS)突出了pH对α-突触核蛋白结构的影响,确定了N端和C端的构象灵活性,并为核心区域以及有时C端的结构提供了证据。针对溶液pH变化后α-突触核蛋白结构重排中显示的变异性提出了一个假设。在120小时的聚集时间进程后,我们观察到二聚体与单体的比例增加,但两者均未发生总体构象变化,只是这种构象动态蛋白质每天都会出现显著变化。

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