A-translation inhibitor killsby targeting ribosomal protein bL12.
Akanksha Varshney, John N Alumasa, Amber Miller, Kenneth C Keiler
bioRxiv : the preprint server for biology · 2025-06
Abstract
New antibiotics with novel mechanisms of action are needed to treat infections by multidrug-resistant strains of. Here, we show that KKL-1005, an anti-tubercular triazole-based molecule, binds to ribosomal protein bL12 and specifically inhibits the-translation ribosome rescue pathway, a process essential for the survival ofOur data demonstrate that KKL-1005 binds to the N terminal domain of bL12, bothand in bacterial cells, and specifically inhibits-translation and not normal translation. These results suggest that tmRNA-SmpB interacts with bL12 differently from tRNA, and raise the possibility of developing antibiotics targeting bL12.