Issue 4, 2023

Ribosome-targeting antibiotics and resistance via ribosomal RNA methylation

Abstract

The rise of multidrug-resistant bacterial infections is a cause of global concern. There is an urgent need to both revitalize antibacterial agents that are ineffective due to resistance while concurrently developing new antibiotics with novel targets and mechanisms of action. Pathogen associated resistance-conferring ribosomal RNA (rRNA) methyltransferases are a growing threat that, as a group, collectively render a total of seven clinically-relevant ribosome-targeting antibiotic classes ineffective. Increasing frequency of identification and their growing prevalence relative to other resistance mechanisms suggests that these resistance determinants are rapidly spreading among human pathogens and could contribute significantly to the increased likelihood of a post-antibiotic era. Herein, with a view toward stimulating future studies to counter the effects of these rRNA methyltransferases, we summarize their prevalence, the fitness cost(s) to bacteria of their acquisition and expression, and current efforts toward targeting clinically relevant enzymes of this class.

Graphical abstract: Ribosome-targeting antibiotics and resistance via ribosomal RNA methylation

Article information

Article type
Review Article
Submitted
21 Dec 2022
Accepted
17 Feb 2023
First published
01 Mar 2023

RSC Med. Chem., 2023,14, 624-643

Ribosome-targeting antibiotics and resistance via ribosomal RNA methylation

L. Jeremia, B. E. Deprez, D. Dey, G. L. Conn and W. M. Wuest, RSC Med. Chem., 2023, 14, 624 DOI: 10.1039/D2MD00459C

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