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氢-氘交换与电子捕获解离用于探究气态蜂毒素离子的构象

Hydrogen-Deuterium Exchange and Electron Capture Dissociation to Interrogate the Conformation of Gaseous Melittin Ions.

作者信息

Straus Rita N, Jockusch Rebecca A

机构信息

Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, ON, M5S 3H6, Canada.

出版信息

J Am Soc Mass Spectrom. 2019 May;30(5):864-875. doi: 10.1007/s13361-019-02150-5. Epub 2019 Mar 4.

Abstract

There is a need in the field of biological mass spectrometry for structural tools which can report on regional, rather than solely global, structure of gaseous protein ions. Site-specific hydrogen-deuterium (H/D) exchange has shown promise in fulfilling this need, but requires additional method development to prove its utility. In this study, we use H/D exchange and electron capture dissociation (ECD) to probe the gaseous structure of two peptides which are α-helical in solution and which differ by a single point mutation. Global H/D exchange levels, ECD fragmentation profiles, and region specific H/D exchange profiles are compared between wild type (WT) melittin, which adopts a hinged helix conformation in solution, and a mutant P14A melittin which folds into a single helix in solution. High protection from H/D exchange by both peptides is consistent with retention of secondary structure in the gas phase (or refolding into some other compact structure). The P14A mutant melittin exhibits lower ECD fragmentation efficiency than WT melittin, suggesting that it contains more secondary structure in the gas phase, which may indicate that these peptides retain some memory of their solution-phase structures. Examination of the isotopic distributions of fragment ions derived from H/D exchange with subsequent ECD reveals that the C-terminus of these peptides adopts multiple conformations. The results reported here offer insight into the stability of alpha helices in the gas phase, and also highlight the value of combining gas-phase H/D exchange with electron capture dissociation to interrogate gaseous peptide conformation.

摘要

生物质谱领域需要能够报告气态蛋白质离子的区域结构而非仅整体结构的结构分析工具。位点特异性氢-氘(H/D)交换在满足这一需求方面已显示出前景,但需要进一步的方法开发来证明其效用。在本研究中,我们使用H/D交换和电子捕获解离(ECD)来探测两种在溶液中呈α螺旋结构且仅存在单点突变差异的肽段的气态结构。比较了野生型(WT)蜂毒素(其在溶液中呈铰链螺旋构象)和突变型P14A蜂毒素(其在溶液中折叠成单螺旋)之间的整体H/D交换水平、ECD碎裂谱以及区域特异性H/D交换谱。两种肽段对H/D交换的高度保护与气相中二级结构的保留(或重折叠成其他紧密结构)相一致。P14A突变型蜂毒素的ECD碎裂效率低于WT蜂毒素,这表明它在气相中含有更多二级结构,这可能表明这些肽段保留了其溶液相结构的一些记忆。对源自H/D交换并随后进行ECD的碎片离子的同位素分布的研究表明,这些肽段的C末端采用多种构象。本文报道的结果为深入了解气相中α螺旋的稳定性提供了见解,同时也突出了将气相H/D交换与电子捕获解离相结合以研究气态肽构象的价值。

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