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氧化剂对半胱氨酸组织蛋白酶蛋白水解活性的调节。

Regulation of the Proteolytic Activity of Cysteine Cathepsins by Oxidants.

机构信息

Université de Tours, 37000 Tours, France.

INSERM, UMR1100, Centre d'Etude des Pathologies Respiratoires, 37000 Tours, France.

出版信息

Int J Mol Sci. 2020 Mar 12;21(6):1944. doi: 10.3390/ijms21061944.

Abstract

Besides their primary involvement in the recycling and degradation of proteins in endo-lysosomal compartments and also in specialized biological functions, cysteine cathepsins are pivotal proteolytic contributors of various deleterious diseases. While the molecular mechanisms of regulation via their natural inhibitors have been exhaustively studied, less is currently known about how their enzymatic activity is modulated during the redox imbalance associated with oxidative stress and their exposure resistance to oxidants. More specifically, there is only patchy information on the regulation of lung cysteine cathepsins, while the respiratory system is directly exposed to countless exogenous oxidants contained in dust, tobacco, combustion fumes, and industrial or domestic particles. Papain-like enzymes (clan CA, family C1, subfamily C1A) encompass a conserved catalytic thiolate-imidazolium pair (Cys25-His159) in their active site. Although the sulfhydryl group (with a low acidic pKa) is a potent nucleophile highly susceptible to chemical modifications, some cysteine cathepsins reveal an unanticipated resistance to oxidative stress. Besides an introductory chapter and peculiar attention to lung cysteine cathepsins, the purpose of this review is to afford a concise update of the current knowledge on molecular mechanisms associated with the regulation of cysteine cathepsins by redox balance and by oxidants (e.g., Michael acceptors, reactive oxygen, and nitrogen species).

摘要

除了在内体溶酶体隔间中参与蛋白质的再循环和降解以及具有专门的生物学功能外,半胱氨酸组织蛋白酶还是各种有害疾病的关键蛋白水解贡献者。虽然已经对其天然抑制剂的调节分子机制进行了详尽的研究,但目前对于其酶活性如何在与氧化应激相关的氧化还原失衡以及它们对氧化剂的暴露抗性中进行调节知之甚少。更具体地说,关于肺半胱氨酸组织蛋白酶的调节只有零星的信息,而呼吸系统直接暴露于无数包含在灰尘、烟草、燃烧烟雾以及工业或家用颗粒中的外源氧化剂中。木瓜蛋白酶样酶(家族 CA、家族 C1、亚家族 C1A)在其活性部位包含保守的催化硫醇-咪唑鎓对(半胱氨酸 25-组氨酸 159)。尽管巯基(具有低酸性 pKa)是一个极易受到化学修饰的亲核试剂,但一些半胱氨酸组织蛋白酶显示出对氧化应激的出人意料的抗性。除了介绍性章节和对肺半胱氨酸组织蛋白酶的特别关注外,本综述的目的是提供关于与氧化还原平衡和氧化剂(例如迈克尔受体、活性氧和氮物种)调节半胱氨酸组织蛋白酶相关的分子机制的最新知识的简明更新。

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