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植物蛋白质中半胱氨酸残基的翻译后修饰及其对代谢和信号转导调控的影响。

Post-Translational Modifications to Cysteine Residues in Plant Proteins and Their Impact on the Regulation of Metabolism and Signal Transduction.

机构信息

Institut de Recherche en Biologie Végétale, Université de Montréal, 4101 Rue Sherbrooke est, Montréal, QC H1X 2B2, Canada.

出版信息

Int J Mol Sci. 2024 Sep 12;25(18):9845. doi: 10.3390/ijms25189845.

Abstract

Cys is one of the least abundant amino acids in proteins. However, it is often highly conserved and is usually found in important structural and functional regions of proteins. Its unique chemical properties allow it to undergo several post-translational modifications, many of which are mediated by reactive oxygen, nitrogen, sulfur, or carbonyl species. Thus, in addition to their role in catalysis, protein stability, and metal binding, Cys residues are crucial for the redox regulation of metabolism and signal transduction. In this review, we discuss Cys post-translational modifications (PTMs) and their role in plant metabolism and signal transduction. These modifications include the oxidation of the thiol group (-sulfenylation, -sulfinylation and -sulfonylation), the formation of disulfide bridges, -glutathionylation, persulfidation, -cyanylation -nitrosation, -carbonylation, -acylation, prenylation, CoAlation, and the formation of thiohemiacetal. For each of these PTMs, we discuss the origin of the modifier, the mechanisms involved in PTM, and their reversibility. Examples of the involvement of Cys PTMs in the modulation of protein structure, function, stability, and localization are presented to highlight their importance in the regulation of plant metabolic and signaling pathways.

摘要

半胱氨酸是蛋白质中含量最少的氨基酸之一。然而,它通常高度保守,并且通常存在于蛋白质的重要结构和功能区域。其独特的化学性质使其能够进行几种翻译后修饰,其中许多是由活性氧、氮、硫或羰基物种介导的。因此,除了在催化、蛋白质稳定性和金属结合中的作用外,半胱氨酸残基对于代谢和信号转导的氧化还原调节也至关重要。在这篇综述中,我们讨论了半胱氨酸翻译后修饰(PTMs)及其在植物代谢和信号转导中的作用。这些修饰包括硫醇基团的氧化(-亚磺酰化、-磺酰化和-磺化)、二硫键的形成、-谷氨酰化、过硫化、-氰基化、-硝化、-羰基化、-酰化、 prenylation、CoAlation 和硫代半缩醛的形成。对于每种 PTM,我们讨论了修饰剂的来源、涉及的机制及其可逆性。介绍了半胱氨酸 PTM 参与调节蛋白质结构、功能、稳定性和定位的实例,以突出它们在调节植物代谢和信号通路中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0074/11432348/6638f8214485/ijms-25-09845-g001.jpg

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