金黄色葡萄球菌
肽聚糖
生物膜
微生物学
抗菌剂
生物
抗生素
脂质Ⅱ
天然产物
细菌
生物化学
遗传学
作者
Jia Jia,Mingxin Zheng,Chongwen Zhang,Binglei Li,Cai Lu,Yuefan Bai,Qian Tong,Xudong Hang,Yixin Ge,Liping Zeng,Ming Zhao,Fuhang Song,Huawei Zhang,Liang Zhang,Kui Hong,Hongkai Bi
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-08-04
卷期号:9 (31)
被引量:10
标识
DOI:10.1126/sciadv.adg5995
摘要
Staphylococcus aureus poses a severe public health problem as one of the vital causative agents of healthcare- and community-acquired infections. There is a globally urgent need for new drugs with a novel mode of action (MoA) to combat S. aureus biofilms and persisters that tolerate antibiotic treatment. We demonstrate that a benzonaphthopyranone glycoside, chrysomycin A (ChryA), is a rapid bactericide that is highly active against S. aureus persisters, robustly eradicates biofilms in vitro, and shows a sustainable killing efficacy in vivo. ChryA was suggested to target multiple critical cellular processes. A wide range of genetic and biochemical approaches showed that ChryA directly binds to GlmU and DapD, involved in the biosynthetic pathways for the cell wall peptidoglycan and lysine precursors, respectively, and inhibits the acetyltransferase activities by competition with their mutual substrate acetyl-CoA. Our study provides an effective antimicrobial strategy combining multiple MoAs onto a single small molecule for treatments of S. aureus persistent infections.
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