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人α-防御素二硫键还原的构象景观与途径

Conformational landscape and pathway of disulfide bond reduction of human alpha defensin.

作者信息

Snijder Joost, van de Waterbeemd Michiel, Glover Matthew S, Shi Liuqing, Clemmer David E, Heck Albert J R

机构信息

Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, 3584, CH Utrecht, The Netherlands.

Netherlands Proteomics Centre, 3584, CH Utrecht, The Netherlands.

出版信息

Protein Sci. 2015 Aug;24(8):1264-71. doi: 10.1002/pro.2694. Epub 2015 May 27.

DOI:10.1002/pro.2694
PMID:25970658
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4534177/
Abstract

Human alpha defensins are a class of antimicrobial peptides with additional antiviral activity. Such antimicrobial peptides constitute a major part of mammalian innate immunity. Alpha defensins contain six cysteines, which form three well defined disulfide bridges under oxidizing conditions. Residues C3-C31, C5-C20, and C10-C30 form disulfide pairs in the native structure of the peptide. The major tissue in which HD5 is expressed is the crypt of the small intestine, an anaerobic niche that should allow for substantial pools of both oxidized and (partly) reduced HD5. We used ion mobility coupled to mass spectrometry to track the structural changes in HD5 upon disulfide bond reduction. We found evidence of stepwise unfolding of HD5 with sequential reduction of the three disulfide bonds. Alkylation of free cysteines followed by tandem mass spectrometry of the corresponding partially reduced states revealed a dominant pathway of reductive unfolding. The majority of HD5 unfolds by initial reduction of C5-C20, followed by C10-C30 and C3-C31. We find additional evidence for a minor pathway that starts with reduction of C3-C31, followed by C5-C20 and C10-C30. Our results provide insight into the pathway and conformational landscape of disulfide bond reduction in HD5.

摘要

人α防御素是一类具有额外抗病毒活性的抗菌肽。这类抗菌肽构成了哺乳动物先天免疫的主要部分。α防御素含有六个半胱氨酸,在氧化条件下形成三个明确的二硫键。残基C3 - C31、C5 - C20和C10 - C30在肽的天然结构中形成二硫键对。HD5表达的主要组织是小肠隐窝,这是一个厌氧微环境,应该允许大量氧化型和(部分)还原型HD5的存在。我们使用离子淌度与质谱联用技术来追踪HD5中二硫键还原时的结构变化。我们发现了随着三个二硫键依次还原,HD5逐步展开的证据。游离半胱氨酸烷基化后对相应部分还原态进行串联质谱分析,揭示了还原展开的主要途径。大多数HD5通过先还原C5 - C20,接着还原C10 - C30和C3 - C31而展开。我们还发现了一条次要途径的额外证据,该途径始于C3 - C31的还原,接着是C5 - C20和C10 - C30的还原。我们的结果为HD5中二硫键还原的途径和构象景观提供了见解。

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PLoS Pathog. 2014 Sep 4;10(9):e1004360. doi: 10.1371/journal.ppat.1004360. eCollection 2014 Sep.
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Discovery and characterization of a disulfide-locked C(2)-symmetric defensin peptide.一种二硫键锁定的C(2)对称防御素肽的发现与表征
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Facilitating protein disulfide mapping by a combination of pepsin digestion, electron transfer higher energy dissociation (EThcD), and a dedicated search algorithm SlinkS.通过胃蛋白酶消化、电子转移高能解离(EThcD)和专用搜索算法SlinkS相结合的方法来促进蛋白质二硫键图谱分析。
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Ion mobility analysis of molecular dynamics.分子动力学的离子淌度分析
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9
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