Lysine succinylome analysis of MRSA reveals critical roles in energy metabolism and virulence.

IF 2.1 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Letters in Applied Microbiology Pub Date : 2025-01-06 DOI:10.1093/lambio/ovaf004
Xiangqin Zhu, Hui Min, Yishan Tang, Min Gao
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Abstract

Methicillin-resistant Staphylococcus aureus's (MRSA) resistance poses a global health challenge. This study investigates lysine succinylation in MRSA using proteomics and bioinformatics approaches to uncover metabolic and virulence mechanisms, with the goal of identifying novel therapeutic targets. Mass spectrometry and bioinformatics analyses mapped the MRSA succinylome, identifying 8048 succinylation sites on 1210 proteins. These analyses included Gene Ontology annotation, Kyoto Encyclopedia of Genes and Genomes pathway enrichment, and protein-protein interaction (PPI) network construction (e.g. using the STRING database, a widely used online tool for analyzing protein-protein interactions), providing a comprehensive functional and interactive landscape of succinylated proteins. The succinylated proteins were predominantly involved in cytoplasmic metabolic processes, with enrichment in glycolysis/gluconeogenesis and the tricarboxylic acid cycle. Both of these pathways are critical for MRSA's energy production, growth, and virulence, supplying the necessary metabolic intermediates and energy to support bacterial survival and pathogenicity. Motif analysis revealed 13 conserved motifs, while PPI analysis highlighted fibronectin-binding protein A (FnbA) as a central virulence factor. Succinylation significantly influences MRSA's metabolism and virulence, potentially impacting biofilm by modifying key proteins such as FnbA, bifunctional autolysin, and S-ribosylhomocysteine lyase(LuxS). These findings provide new avenues for developing antibiofilm strategies and therapeutic interventions against MRSA.

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MRSA的赖氨酸琥珀酰酶分析揭示了能量代谢和毒力的关键作用。
耐甲氧西林金黄色葡萄球菌的耐药性对全球健康构成挑战。本研究利用蛋白质组学和生物信息学方法研究MRSA中的赖氨酸琥珀酰化,以揭示代谢和毒力机制,目的是确定新的治疗靶点。质谱和生物信息学分析绘制了MRSA琥珀酰化酶图谱,鉴定了1210个蛋白上的8048个琥珀酰化位点。这些分析包括基因本体(GO)注释、京都基因与基因组百科全书(KEGG)途径富集和蛋白质-蛋白质相互作用(PPI)网络构建(例如使用STRING数据库),提供了琥珀化蛋白的全面功能和相互作用景观。琥珀酰化蛋白主要参与细胞质代谢过程,在糖酵解/糖异生和三羧酸(TCA)循环中富集。这两种途径都对MRSA的能量产生、生长和毒力至关重要,提供必要的代谢中间体和能量来支持细菌的生存和致病性。基序分析显示13个保守基序,而PPI分析强调FnbA是主要的毒力因子。琥珀酰化显著影响MRSA的代谢和毒力,可能通过改变FnbA、双功能自溶素和LuxS等关键蛋白影响生物膜。这些发现为开发针对MRSA的抗生素膜策略和治疗干预提供了新的途径。
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来源期刊
Letters in Applied Microbiology
Letters in Applied Microbiology 工程技术-生物工程与应用微生物
CiteScore
4.40
自引率
4.20%
发文量
225
审稿时长
3.3 months
期刊介绍: Journal of & Letters in Applied Microbiology are two of the flagship research journals of the Society for Applied Microbiology (SfAM). For more than 75 years they have been publishing top quality research and reviews in the broad field of applied microbiology. The journals are provided to all SfAM members as well as having a global online readership totalling more than 500,000 downloads per year in more than 200 countries. Submitting authors can expect fast decision and publication times, averaging 33 days to first decision and 34 days from acceptance to online publication. There are no page charges.
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