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变温离子淌度质谱法对三种结构不同的蛋白质(细胞色素c、p53和MDM2)构象的深入研究。

Insights into the conformations of three structurally diverse proteins: cytochrome c, p53, and MDM2, provided by variable-temperature ion mobility mass spectrometry.

作者信息

Dickinson Eleanor R, Jurneczko Ewa, Pacholarz Kamila J, Clarke David J, Reeves Matthew, Ball Kathryn L, Hupp Ted, Campopiano Dominic, Nikolova Penka V, Barran Perdita E

机构信息

†Manchester Institute of Biotechnology, University of Manchester, Manchester M1 7DN, United Kingdom.

‡School of Chemistry, University of Edinburgh, Edinburgh EH9 3JJ, United Kingdom.

出版信息

Anal Chem. 2015 Mar 17;87(6):3231-8. doi: 10.1021/ac503720v. Epub 2015 Feb 25.

Abstract

Thermally induced conformational transitions of three proteins of increasing intrinsic disorder-cytochrome c, the tumor suppressor protein p53 DNA binding domain (p53 DBD), and the N-terminus of the oncoprotein murine double minute 2 (NT-MDM2)-have been studied by native mass spectrometry and variable-temperature drift time ion mobility mass spectrometry (VT-DT-IM-MS). Ion mobility measurements were carried out at temperatures ranging from 200 to 571 K. Multiple conformations are observable over several charge states for all three monomeric proteins, and for cytochrome c, dimers of significant intensity are also observed. Cytochrome c M + 5H ions present in one conformer of CCS ∼1200 Å(2), undergoing compaction in line with the reported Tmelt = 360.15 K before slight unfolding at 571 K. The more extended M + 7H cytochrome c monomer presents as two conformers undergoing similar compaction and structural rearrangements, prior to thermally induced unfolding. The D + 11H dimer presents as two conformers, which undergo slight structural compaction or annealing before dissociation. p53 DBD follows a trend of structural collapse before an increase in the observed collision cross section (CCS), akin to that observed for cytochrome c but proceeding more smoothly. At 300 K, the monomeric charge states present in two conformational families, which compact to one conformer of CCS ∼1750 Å(2) at 365 K, in line with the low solution Tmelt = 315-317 K. The protein then extends to produce either a broad unresolved CCS distribution or, for z > 9, two conformers. NT-MDM2 exhibits a greater number of structural rearrangements, displaying charge-state-dependent unfolding pathways. DT-IM-MS experiments at 200 K resolve multiple conformers. Low charge state species of NT-MDM2 present as a single compact conformational family centered on CCS ∼1250 Å(2) at 300 K. This undergoes conformational tightening in line with the solution Tmelt = 348 K before unfolding at the highest temperatures. The more extended charge states present in two or more conformers at room temperature, undergoing thermally induced unfolding before significant structural collapse or annealing at high temperatures. Variable-temperature IM-MS is here shown to be an exciting approach to discern protein unfolding pathways for conformationally diverse proteins.

摘要

利用原生质谱法和变温漂移时间离子淌度质谱法(VT-DT-IM-MS)研究了三种内在无序程度递增的蛋白质——细胞色素c、肿瘤抑制蛋白p53的DNA结合结构域(p53 DBD)和癌蛋白小鼠双微体2的N端(NT-MDM2)——的热诱导构象转变。离子淌度测量在200至571 K的温度范围内进行。对于所有三种单体蛋白,在多个电荷态下都可观察到多种构象,对于细胞色素c,还观察到了强度可观的二聚体。细胞色素c的M + 5H离子存在于一种CCS约为1200 Ų的构象中,在报道的熔点温度Tmelt = 360.15 K时发生压缩,然后在571 K时略有展开。更伸展的M + 7H细胞色素c单体呈现为两种构象,在热诱导展开之前经历类似的压缩和结构重排。D + 11H二聚体呈现为两种构象,在解离之前经历轻微的结构压缩或退火。p53 DBD在观察到的碰撞截面(CCS)增加之前遵循结构塌陷的趋势,类似于在细胞色素c中观察到的情况,但过程更平稳。在300 K时,单体电荷态存在于两个构象家族中,在365 K时压缩为一种CCS约为1750 Ų的构象,这与较低的溶液熔点温度Tmelt = 315 - 317 K一致。然后该蛋白质伸展,产生要么是宽泛的未解析的CCS分布,要么对于z > 9时产生两种构象。NT-MDM2表现出更多的结构重排,显示出电荷态依赖性的展开途径。在200 K下进行的DT-IM-MS实验解析出多种构象。NT-MDM2的低电荷态物种在300 K时呈现为以CCS约为1250 Ų为中心的单个紧密构象家族。在溶液熔点温度Tmelt = 348 K时,它会发生构象收紧,然后在最高温度下展开。更伸展的电荷态在室温下存在于两种或更多种构象中,在高温下发生显著的结构塌陷或退火之前经历热诱导展开。本文表明变温离子淌度质谱法是一种用于识别构象多样的蛋白质展开途径的令人兴奋的方法。

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