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Genome-wide screen reveals cellular functions that counteract rifampicin lethality in Escherichia coli .

Yu WangHan FuXiao-Jie ShiGuo-Ping ZhaoLiang-Dong Lyu
Published in: Microbiology spectrum (2023)
, we established that rifampicin efficacy is strongly dependent on several cellular pathways, including iron acquisition, DNA repair, aerobic respiration, and carbon metabolism. In addition, we provide evidence that these pathways modulate rifampicin efficacy in a manner distinct from redox-related killing. Our findings provide insights into the mechanism of rifamycin efficacy and may aid in the development of new antimicrobial adjuvants.
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