Department of Microbiology, University of Oslo , P.O. Box 4950, Nydalen, NO-0424 Oslo, Norway.
Addis Ababa University , Institute of Biotechnology, P.O. Box 1176, Addis Ababa, Ethiopia.
J Proteome Res. 2017 Nov 3;16(11):4045-4059. doi: 10.1021/acs.jproteome.7b00429. Epub 2017 Oct 4.
Increasing evidence demonstrates that lysine acetylation is involved in Mycobacterium tuberculosis (Mtb) virulence and pathogenesis. However, previous investigations in Mtb have only monitored acetylation at lysine residues using selected reference strains. We analyzed the global N- and O-acetylation of three Mtb isolates: two lineage 7 clinical isolates and the lineage 4 H37Rv reference strain. Quantitative acetylome analysis resulted in identification of 2490 class-I acetylation sites, 2349 O-acetylation and 141 N-acetylation sites, derived from 953 unique proteins. Mtb O-acetylation was thereby significantly more abundant than N-acetylation. The acetylated proteins were found to be involved in central metabolism, translation, stress responses, and antimicrobial drug resistance. Notably, 261 acetylation sites on 165 proteins were differentially regulated between lineage 7 and lineage 4 strains. A total of 257 acetylation sites on 161 proteins were hypoacetylated in lineage 7 strains. These proteins are involved in Mtb growth, virulence, bioenergetics, host-pathogen interactions, and stress responses. This study provides the first global analysis of O-acetylated proteins in Mtb. This quantitative acetylome data expand the current understanding regarding the nature and diversity of acetylated proteins in Mtb and open a new avenue of research for exploring the role of protein acetylation in Mtb physiology.
越来越多的证据表明赖氨酸乙酰化参与了结核分枝杆菌(Mtb)的毒力和发病机制。然而,之前对 Mtb 的研究仅使用选定的参考菌株监测赖氨酸残基的乙酰化。我们分析了三种 Mtb 分离株的全局 N-和 O-乙酰化:两种谱系 7 临床分离株和谱系 4 H37Rv 参考株。定量乙酰组分析鉴定了 2490 个 I 类乙酰化位点、2349 个 O-乙酰化和 141 个 N-乙酰化位点,这些位点来源于 953 个独特的蛋白质。因此,Mtb 的 O-乙酰化明显比 N-乙酰化更丰富。发现乙酰化蛋白参与中心代谢、翻译、应激反应和抗微生物药物耐药性。值得注意的是,谱系 7 和谱系 4 菌株之间有 261 个位于 165 个蛋白质上的乙酰化位点存在差异调节。谱系 7 菌株中有 257 个位于 161 个蛋白质上的乙酰化位点被低乙酰化。这些蛋白质参与 Mtb 的生长、毒力、生物能量、宿主-病原体相互作用和应激反应。本研究首次对 Mtb 中的 O-乙酰化蛋白进行了全局分析。该定量乙酰组数据扩展了当前对 Mtb 中乙酰化蛋白的性质和多样性的理解,并为探索蛋白质乙酰化在 Mtb 生理学中的作用开辟了新的研究途径。