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蓝藻赖氨酸 2-羟基异丁酰化的鉴定和功能分析。

Identification and Functional Analysis of Lysine 2-Hydroxyisobutyrylation in Cyanobacteria.

机构信息

Key Laboratory of Breeding Biotechnology and Sustainable Aquaculture, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Proteome Res. 2024 May 3;23(5):1689-1701. doi: 10.1021/acs.jproteome.3c00843. Epub 2024 Apr 2.

Abstract

Cyanobacteria are the oldest prokaryotic photoautotrophic microorganisms and have evolved complicated post-translational modification (PTM) machinery to respond to environmental stress. Lysine 2-hydroxyisobutyrylation (Khib) is a newly identified PTM that is reported to play important roles in diverse biological processes, however, its distribution and function in cyanobacteria have not been reported. Here, we performed the first systematic studies of Khib in a model cyanobacterium sp. strain PCC 7002 (Syn7002) using peptide prefractionation, pan-Khib antibody enrichment, and high-accuracy mass spectrometry (MS) analysis. A total of 1875 high-confidence Khib sites on 618 proteins were identified, and a large proportion of Khib sites are present on proteins in the cellular metabolism, protein synthesis, and photosynthesis pathways. Using site-directed mutagenesis and functional studies, we showed that Khib of glutaredoxin (Grx) affects the efficiency of the PS II reaction center and HO resistance in Syn7002. Together, this study provides novel insights into the functions of Khib in cyanobacteria and suggests that reversible Khib may influence the stress response and photosynthesis in both cyanobacteria and plants.

摘要

蓝细菌是最古老的原核光合微生物,它们已经进化出复杂的翻译后修饰(PTM)机制来应对环境压力。赖氨酸 2-羟异丁酰化(Khib)是一种新发现的 PTM,据报道在多种生物过程中发挥重要作用,但在蓝细菌中的分布和功能尚未报道。在这里,我们使用肽预分级、泛 Khib 抗体富集和高准确度质谱(MS)分析,首次对模式蓝细菌 sp. 株 PCC 7002(Syn7002)中的 Khib 进行了系统研究。共鉴定出 618 种蛋白质上的 1875 个高置信度 Khib 位点,其中很大一部分 Khib 位点存在于细胞代谢、蛋白质合成和光合作用途径中的蛋白质上。通过定点突变和功能研究,我们表明谷氧还蛋白(Grx)的 Khib 影响 Syn7002 中 PS II 反应中心和 HO 抗性的效率。总之,这项研究为 Khib 在蓝细菌中的功能提供了新的见解,并表明可逆 Khib 可能影响蓝细菌和植物中的应激反应和光合作用。

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