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Succinylome Analysis Reveals the Involvement of Lysine Succinylation in Metabolism in Pathogenic Mycobacterium tuberculosis

机译:琥珀酰化分析揭示了赖氨酸琥珀酰化参与致病性结核分枝杆菌代谢的过程。

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摘要

Mycobacterium tuberculosis (Mtb), the causative agent of human tuberculosis, remains one of the most prevalent human pathogens and a major cause of mortality worldwide. Metabolic network is a central mediator and defining feature of the pathogenicity of Mtb. Increasing evidence suggests that lysine succinylation dynamically regulates enzymes in carbon metabolism in both bacteria and human cells; however, its extent and function in Mtb remain unexplored. Here, we performed a global succinylome analysis of the virulent Mtb strain H37Rv by using high accuracy nano-LC-MS/MS in combination with the enrichment of succinylated peptides from digested cell lysates and subsequent peptide identification. In total, 1545 lysine succinylation sites on 626 proteins were identified in this pathogen. The identified succinylated proteins are involved in various biological processes and a large proportion of the succinylation sites are present on proteins in the central metabolism pathway. Site-specific mutations showed that succinylation is a negative regulatory modification on the enzymatic activity of acetyl-CoA synthetase. Molecular dynamics simulations demonstrated that succinylation affects the conformational stability of acetyl-CoA synthetase, which is critical for its enzymatic activity. Further functional studies showed that CobB, a sirtuin-like deacetylase in Mtb, functions as a desuccinylase of acetyl-CoA synthetase in in vitro assays. Together, our findings reveal widespread roles for lysine succinylation in regulating metabolism and diverse processes in Mtb. Our data provide a rich resource for functional analyses of lysine succinylation and facilitate the dissection of metabolic networks in this life-threatening pathogen.
机译:结核分枝杆菌(Mtb)是人类结核病的病原体,仍然是人类最普遍的病原体之一,也是全球范围内的主要死亡原因。代谢网络是中央介质,是Mtb致病性的特征。越来越多的证据表明,赖氨酸琥珀酰化作用可以动态调节细菌和人体细胞碳代谢中的酶。但是,其在Mtb中的范围和功能尚待探索。在这里,我们通过使用高精度的nano-LC-MS / MS技术与消化细胞裂解液中琥珀酰化肽的富集和随后的肽鉴定相结合,对有毒的Mtb菌株H37Rv进行了全局琥珀酰化分析。在该病原体中,总共鉴定出626个蛋白质上的1545个赖氨酸琥珀酰化位点。鉴定出的琥珀酰化蛋白涉及各种生物学过程,并且大部分琥珀酰化位点存在于中央代谢途径中的蛋白质上。位点特异性突变表明,琥珀酰化是对乙酰辅酶A合成酶的酶活性的负调控。分子动力学模拟表明,琥珀酰化影响乙酰辅酶A合成酶的构象稳定性,这对其酶活性至关重要。进一步的功能研究表明,CobB是Mtb中的一种类似瑟土因的脱乙酰基酶,在体外测定中起乙酰基CoA合成酶的脱琥珀酰酶的作用。总之,我们的发现揭示了赖氨酸琥珀酰化在调节Mtb代谢和各种过程中的广泛作用。我们的数据为赖氨酸琥珀酰化的功能分析提供了丰富的资源,并有助于在这种威胁生命的病原体中分解代谢网络。

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