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Flavomycin inhibits plasmid-mediated conjugative transfer of antibiotic resistance genes by disrupting energy metabolism and pilus assembly
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作者 Yi-Yun Liu Min Liao +8 位作者 Yu-Jie Li Cai-Ying Lin ruo-rou qian Jing-Hao Liu Jia-Kuo Chen Hui-Ying Yue Xin-Lei Lian Ying Huang Jian-Hua Liu 《Zoological Research》 2025年第6期1438-1446,I0099-I0104,共15页
The rapid global dissemination of multidrug-resistant(MDR)bacteria,primarily driven by horizontal gene transfer through conjugative plasmids,poses a significant challenge to modern medicine.Conjugation enables the eff... The rapid global dissemination of multidrug-resistant(MDR)bacteria,primarily driven by horizontal gene transfer through conjugative plasmids,poses a significant challenge to modern medicine.Conjugation enables the efficient spread of antibiotic resistance genes across bacterial populations,severely compromising the efficacy of existing therapies.This study examined the inhibitory potential of flavomycin against plasmid-mediated transmission of clinically relevant resistance genes and elucidated the underlying molecular mechanisms.Results showed that flavomycin markedly reduced the conjugative transfer of plasmids carrying bla CTX-M,bla NDM,and mcr-1genes in a dose-dependent manner,decreasing conjugation frequencies by approximately 14-to 100-fold.Mechanistic analysis indicated that inhibition of plasmid transfer resulted from intracellular depletion of ATP and Larginine,both essential for the energy-dependent conjugation process.Transcriptomic analyses revealed broad suppression of genes involved in energy metabolism,while supplementation with exogenous Larginine restored conjugation frequencies.Additionally,flavomycin down-regulated the expression of mating pair formation(MPF)genes and disrupted pilus biogenesis,as confirmed by scanning electron microscopy.These findings identify flavomycin as a potent inhibitor of horizontal gene transfer,acting through disruption of bacterial energy metabolism and impairment of pilus assembly,and highlight its potential as a promising strategy to limit the propagation of MDR bacteria. 展开更多
关键词 Antibiotic resistance genes Plasmids FLAVOMYCIN Dissemination control
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