蛋白质硫醇氧化还原状态检测的全局方法。

IF 6.9 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Opinion in Chemical Biology Pub Date : 2023-10-03 DOI:10.1016/j.cbpa.2023.102390
Lisa R. Knoke, Lars I. Leichert
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引用次数: 0

摘要

由于其亲核性,半胱氨酸的巯基在化学上是非常通用的。因此,半胱氨酸通常在蛋白质中具有重要功能,无论是作为活性位点,还是在细胞外蛋白质中,作为结构二硫化物的一部分。在胞质溶胶中,半胱氨酸通常会减少。但其巯基的亲核性使其也特别容易发生翻译后的氧化修饰。这些修饰通常导致受影响蛋白质的功能改变,并且在体内是可逆的,例如通过硫氧还蛋白和戊二氧还蛋白系统。这些修饰的体内可逆性质及其在局部高氧化剂水平存在下的发生,导致了基于硫醇的氧化还原调节的范式,以及调节蛋白中硫醇氧化对细胞代谢的适应和调节,以响应氧化刺激。因此,半胱氨酸的这些氧化翻译后修饰的蛋白质组学研究在氧化还原生物学中发挥着不可或缺的作用。
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Global approaches for protein thiol redox state detection

Due to its nucleophilicity, the thiol group of cysteine is chemically very versatile. Hence, cysteine often has important functions in a protein, be it as the active site or, in extracellular proteins, as part of a structural disulfide. Within the cytosol, cysteines are typically reduced. But the nucleophilicity of its thiol group makes it also particularly prone to post-translational oxidative modifications. These modifications often lead to an alteration of the function of the affected protein and are reversible in vivo, e.g. by the thioredoxin and glutaredoxin system. The in vivo-reversible nature of these modifications and their genesis in the presence of localized high oxidant levels led to the paradigm of thiol-based redox regulation, the adaptation, and modulation of the cellular metabolism in response to oxidative stimuli by thiol oxidation in regulative proteins. Consequently, the proteomic study of these oxidative posttranslational modifications of cysteine plays an indispensable role in redox biology.

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来源期刊
Current Opinion in Chemical Biology
Current Opinion in Chemical Biology 生物-生化与分子生物学
CiteScore
13.30
自引率
1.30%
发文量
113
审稿时长
74 days
期刊介绍: COCHBI (Current Opinion in Chemical Biology) is a systematic review journal designed to offer specialists a unique and educational platform. Its goal is to help professionals stay informed about the growing volume of information in the field of Chemical Biology through systematic reviews.
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