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Lavrynchuk, Y.

Publications and source records attributed to Lavrynchuk, Y..

2 recordsLinked to original sources

Alanine dependence of trans-translation contributes to riboregulation of mycobacterial antibiotic recalcitrance genes

ASBTRACTAntibiotic recalcitrance refers to a slower rate of death for either a bacterial population or a subpopulation of cells upon antibiotic exposure. It complicates treatment of many bacterial infections by contributing to treatment length, treatment failure, disease recurrence, and the emergence of antimicrobial resistance (AMR). Thus, blocking antibiotic recalcitrance could be a powerful strategy for improving treatment outcomes and reducing AMR rates. Here, using a forward genetic method for the isolation of antibiotic-recalcitrant mutants, we isolated two Mycobacterium smegmatis strains with mutations in the tRNA-modifying enzyme adenine-N(1)-methyltransferase. Both mutants were recalcitrant to proteostasis-perturbing antibiotics. We linked these phenotypes to upregulation of the transcriptional regulator WhiB7, highlighting its role as a point of convergence in the regulation of multiple mechanisms of antibiotic recalcitrance and resistance. Further, we identified a mechanism by which the amino acid alanine couples trans-translation to ribosome regulation-dependent, WhiB7-mediated expression of antibiotic resistance and recalcitrance genes, allowing bacterial cells to engage seemingly mutually exclusive mechanisms of survival upon exposure to stress.

microbiology↗

The mycobacterial nucleoid-associated protein NapM exhibits stress-induced septal localization and modulates cell envelope gene expression

The bacterial chromosome is organized in a hierarchical and dynamic manner to facilitate various DNA transactions. Nucleoid-associated proteins (NAPs) are the most abundant small-scale chromosomal organizers, playing roles in maintaining chromosomal DNA integrity, gene regulation, DNA replication, and DNA repair. In this study, we characterize the recently identified mycobacterial NAP, NapM in Mycobacterium smegmatis. Our study shows that NapM exhibits a distinctive septal localization in response to stress affecting cell envelope integrity and modulates the expression of approximately one-third of M. smegmatis genes, including those involved in cell envelope biosynthesis. Our findings suggest that NapM regulates mycobacterial cell division under stress, enabling this saprophyte to adapt to constantly changing environmental conditions.

molecular biology↗