地氯酸
金黄色葡萄球菌
可药性
毒力
药物发现
生物
小分子
微生物学
计算生物学
细菌
生物化学
遗传学
基因
作者
Lincoln W. Pasquina,John P. Santa Maria,B. McKay Wood,Samir H. Moussa,Leigh M. Matano,Marina Santiago,Sara E. Martin,Wonsik Lee,Timothy C. Meredith,Suzanne Walker
标识
DOI:10.1038/nchembio.1967
摘要
A series of synthetic lethal strategies identifies a small-molecule inhibitor of Staphylococcus aureus DltB, links teichoic acid D-alanylation to virulence and identifies synergistic antibiotic drug combinations. The majority of bacterial proteins are dispensable for growth in the laboratory but nevertheless have important physiological roles. There are no systematic approaches to identify cell-permeable small-molecule inhibitors of these proteins. We demonstrate a strategy to identify such inhibitors that exploits synthetic lethal relationships both for small-molecule discovery and for target identification. Applying this strategy in Staphylococcus aureus, we have identified a compound that inhibits DltB, a component of the teichoic acid D-alanylation machinery that has been implicated in virulence. This D-alanylation inhibitor sensitizes S. aureus to aminoglycosides and cationic peptides and is lethal in combination with a wall teichoic acid inhibitor. We conclude that DltB is a druggable target in the D-alanylation pathway. More broadly, the work described demonstrates a systematic method to identify biologically active inhibitors of major bacterial processes that can be adapted to numerous organisms.
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