Ma Ya-Xuan, Wang Xiu-Dan, Li Xin-Min
Institute of chronic diseases, The Affiliated Hospital of Qingdao University, School of Basic Medicine, Qingdao University, Qingdao, China.
State Key Laboratory of Marine Food Processing & Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao, China.
J Bacteriol. 2025 Aug 21;207(8):e0010825. doi: 10.1128/jb.00108-25. Epub 2025 Jul 17.
Uncovering the mechanisms regulating the pathogenicity of bacterial pathogens can help improve diagnostic capabilities and aid the development of new drugs, both of which are crucial for reducing the burden caused by bacterial infections. In recent years, with advancements in third-generation sequencing technologies, increasing evidence has shown that DNA methylation plays a pivotal role in the pathogenicity of bacterial pathogens. We believe that the key DNA methyltransferases involved in pathogenicity represent promising targets for antimicrobial therapies and that the DNA methylation sites involved in bacterial pathogenicity are important biomarkers for diagnosing bacterial infections. In this review, we summarize the following topics: (i) methods for DNA methylation sequencing; (ii) the involvement of DNA methylation in antibacterial drug resistance; (iii) the influence of DNA methylation on the expression of bacterial virulence genes; (iv) the impact of DNA methylation on bacterial biofilm formation, adhesion, and motility; and (v) the role of DNA methylation in bacterial adaptation. We hope to provide insights into bacterial pathogenicity from the perspective of bacterial epigenetics.
揭示调控细菌病原体致病性的机制有助于提高诊断能力并推动新药研发,这两者对于减轻细菌感染造成的负担都至关重要。近年来,随着第三代测序技术的进步,越来越多的证据表明DNA甲基化在细菌病原体的致病性中起关键作用。我们认为,参与致病性的关键DNA甲基转移酶是抗菌治疗的有前景的靶点,而涉及细菌致病性的DNA甲基化位点是诊断细菌感染的重要生物标志物。在本综述中,我们总结了以下主题:(i)DNA甲基化测序方法;(ii)DNA甲基化与抗菌药物耐药性的关系;(iii)DNA甲基化对细菌毒力基因表达的影响;(iv)DNA甲基化对细菌生物膜形成、黏附及运动性的影响;(v)DNA甲基化在细菌适应性中的作用。我们希望从细菌表观遗传学的角度为细菌致病性提供见解。