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Acetylation of Response Regulator Proteins, TcrX and MtrA in M. tuberculosis Tunes their Phosphotransfer Ability and Modulates Two-Component Signaling Crosstalk.结核分枝杆菌中调控蛋白 TcrX 和 MtrA 的乙酰化调节其磷酸转移能力,并调节双组分信号串扰。
J Mol Biol. 2019 Feb 15;431(4):777-793. doi: 10.1016/j.jmb.2019.01.004. Epub 2019 Jan 9.
2
Histone methyltransferase SUV39H1 participates in host defense by methylating mycobacterial histone-like protein HupB.组蛋白甲基转移酶 SUV39H1 通过甲基化分枝杆菌组蛋白样蛋白 HupB 参与宿主防御。
EMBO J. 2018 Jan 17;37(2):183-200. doi: 10.15252/embj.201796918. Epub 2017 Nov 23.
3
Systematic Proteomic Analysis of Protein Methylation in Prokaryotes and Eukaryotes Revealed Distinct Substrate Specificity.系统蛋白质组学分析揭示了原核生物和真核生物中蛋白质甲基化的独特底物特异性。
Proteomics. 2018 Jan;18(1). doi: 10.1002/pmic.201700300. Epub 2017 Dec 14.
4
Methyl-accepting chemotaxis proteins: a core sensing element in prokaryotes and archaea.甲基接受趋化蛋白:原核生物和古细菌中的核心传感元件。
Cell Mol Life Sci. 2017 Sep;74(18):3293-3303. doi: 10.1007/s00018-017-2514-0. Epub 2017 Apr 13.
5
Comprehensive Essentiality Analysis of the Mycobacterium tuberculosis Genome via Saturating Transposon Mutagenesis.通过饱和转座子诱变对结核分枝杆菌基因组进行综合必需性分析。
mBio. 2017 Jan 17;8(1):e02133-16. doi: 10.1128/mBio.02133-16.
6
Lysine acetylation of the Mycobacterium tuberculosis HU protein modulates its DNA binding and genome organization.结核分枝杆菌HU蛋白的赖氨酸乙酰化调节其DNA结合和基因组组织。
Mol Microbiol. 2016 May;100(4):577-88. doi: 10.1111/mmi.13339. Epub 2016 Feb 22.
7
Mycobacteria modulate host epigenetic machinery by Rv1988 methylation of a non-tail arginine of histone H3.分枝杆菌通过 Rv1988 对组蛋白 H3 的非尾部精氨酸的甲基化来调节宿主表观遗传机制。
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8
Protein Phosphatases of Pathogenic Bacteria: Role in Physiology and Virulence.致病菌中的蛋白磷酸酶:在生理学和毒力中的作用。
Annu Rev Microbiol. 2015;69:527-47. doi: 10.1146/annurev-micro-020415-111342. Epub 2015 Sep 10.
9
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Essential roles of methionine and S-adenosylmethionine in the autarkic lifestyle of Mycobacterium tuberculosis.蛋氨酸和S-腺苷甲硫氨酸在结核分枝杆菌自给自足生活方式中的重要作用。
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分枝杆菌中双组分反应调节因子MtrA的甲基化会对其DNA结合和转录激活产生负调控作用。

Methylation of two-component response regulator MtrA in mycobacteria negatively modulates its DNA binding and transcriptional activation.

机构信息

CSIR-Institute of Genomics and Integrative Biology, Delhi 110007, India.

Department of Zoology, University of Delhi, Delhi 110007, India.

出版信息

Biochem J. 2020 Dec 11;477(23):4473-4489. doi: 10.1042/BCJ20200455.

DOI:10.1042/BCJ20200455
PMID:33175092
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11374129/
Abstract

Post-translational modifications such as phosphorylation, nitrosylation, and pupylation modulate multiple cellular processes in Mycobacterium tuberculosis. While protein methylation at lysine and arginine residues is widespread in eukaryotes, to date only two methylated proteins in Mtb have been identified. Here, we report the identification of methylation at lysine and/or arginine residues in nine mycobacterial proteins. Among the proteins identified, we chose MtrA, an essential response regulator of a two-component signaling system, which gets methylated on multiple lysine and arginine residues to examine the functional consequences of methylation. While methylation of K207 confers a marginal decrease in the DNA-binding ability of MtrA, methylation of R122 or K204 significantly reduces the interaction with the DNA. Overexpression of S-adenosyl homocysteine hydrolase (SahH), an enzyme that modulates the levels of S-adenosyl methionine in mycobacteria decreases the extent of MtrA methylation. Most importantly, we show that decreased MtrA methylation results in transcriptional activation of mtrA and sahH promoters. Collectively, we identify novel methylated proteins, expand the list of modifications in mycobacteria by adding arginine methylation, and show that methylation regulates MtrA activity. We propose that protein methylation could be a more prevalent modification in mycobacterial proteins.

摘要

磷酸化、亚硝基化和小泛素样修饰蛋白化等翻译后修饰可调节结核分枝杆菌中的多种细胞过程。虽然赖氨酸和精氨酸残基的蛋白质甲基化在真核生物中广泛存在,但迄今为止,在结核分枝杆菌中仅鉴定出两种甲基化蛋白。在此,我们报告了在9种分枝杆菌蛋白的赖氨酸和/或精氨酸残基处鉴定出甲基化。在鉴定出的蛋白中,我们选择了双组分信号系统的必需应答调节因子MtrA,它在多个赖氨酸和精氨酸残基上发生甲基化,以研究甲基化的功能后果。虽然K207的甲基化使MtrA的DNA结合能力略有下降,但R122或K204的甲基化显著降低了与DNA的相互作用。调节分枝杆菌中S-腺苷甲硫氨酸水平的S-腺苷同型半胱氨酸水解酶(SahH)的过表达降低了MtrA甲基化的程度。最重要的是,我们表明MtrA甲基化的减少导致mtrA和sahH启动子的转录激活。总体而言,我们鉴定出了新的甲基化蛋白,通过添加精氨酸甲基化扩展了分枝杆菌中的修饰列表,并表明甲基化调节MtrA活性。我们提出蛋白质甲基化可能是分枝杆菌蛋白中更普遍的修饰。