Papaleo Stella, Alvaro Alessandro, Nodari Riccardo, Panelli Simona, Bitar Ibrahim, Comandatore Francesco
Romeo ed Enrica Invernizzi Pediatric Research Center, Department of Biomedical and Clinical Sciences, University of Milan, Milan, Italy.
Romeo ed Enrica Invernizzi Pediatric Research Center, Department of Bioscience, University of Milan, Milan, Italy.
Front Microbiol. 2022 Sep 15;13:957901. doi: 10.3389/fmicb.2022.957901. eCollection 2022.
DNA methylation is an important mechanism involved in bacteria limiting foreign DNA acquisition, maintenance of mobile genetic elements, DNA mismatch repair, and gene expression. Changes in DNA methylation pattern are observed in bacteria under stress conditions, including exposure to antimicrobial compounds. These changes can result in transient and fast-appearing adaptive antibiotic resistance (AdR) phenotypes, e.g., strain overexpressing efflux pumps. DNA methylation can be related to DNA mutation rate, because it is involved in DNA mismatch repair systems and because methylated bases are well-known mutational hotspots. The AdR process can be the first important step in the selection of antibiotic-resistant strains, allowing the survival of the bacterial population until more efficient resistant mutants emerge. Epigenetic modifications can be investigated by third-generation sequencing platforms that allow us to simultaneously detect all the methylated bases along with the DNA sequencing. In this scenario, this sequencing technology enables the study of epigenetic modifications in link with antibiotic resistance and will help to investigate the relationship between methylation and mutation in the development of stable mechanisms of resistance.
DNA甲基化是一种重要机制,参与细菌限制外源DNA获取、移动遗传元件维持、DNA错配修复及基因表达。在包括接触抗菌化合物在内的应激条件下,细菌中会观察到DNA甲基化模式的变化。这些变化可导致短暂且快速出现的适应性抗生素耐药(AdR)表型,例如过表达外排泵的菌株。DNA甲基化可能与DNA突变率相关,因为它参与DNA错配修复系统,且甲基化碱基是众所周知的突变热点。AdR过程可能是抗生素耐药菌株选择中的首个重要步骤,使细菌群体得以存活,直至出现更高效的耐药突变体。表观遗传修饰可通过第三代测序平台进行研究,该平台能让我们在进行DNA测序的同时检测所有甲基化碱基。在这种情况下,这种测序技术能够研究与抗生素耐药性相关的表观遗传修饰,并将有助于探究甲基化与突变在稳定耐药机制形成过程中的关系。