脂肽
化学
鲍曼不动杆菌
多粘菌素
合理设计
微生物学
细胞内
细菌
脚手架
流出
抗生素
结构-活动关系
铅化合物
药物发现
环肽
治疗方式
计算生物学
去极化
毒素
药理学
生物信息学
诱饵
生物化学
多粘菌素B
作者
Junjie Zhang,Fawei He,Yurui Wang,Peng Jiang,Jiongwen Qin,Meng Liu,Jiawei Yao,Dongting Zhangsun,M Y Li,Sulan Luo,Yong Wu
标识
DOI:10.1021/acs.jmedchem.6c00580
摘要
The surge in multidrug-resistant (MDR) pathogens necessitates novel therapeutic strategies. Here, we report the rational design of C4-VG7, an N-terminal butyrylated lipopeptide engineered from a compact, cationic, helix-compatible segment of the marine conotoxin αO-GeXIVA. Through stepwise structural optimization─from constrained cyclic prototypes to lipidated derivatives─C4-VG7 was identified as a lead candidate with potent, broad-spectrum activity against MDR ESKAPE pathogens, including clinical isolates (MIC ≈1 μM). Mechanistically, C4-VG7 exhibits multimodal bactericidal action: C4-tail-mediated membrane depolarization is consistent with early membrane disruption followed by intracellular DNA association and oxidative stress. In murine models of MRSA and Acinetobacter baumannii infections (skin and peritonitis), C4-VG7 achieved efficacy comparable to polymyxin B with significantly reduced hepatonephrotoxicity. Thus, C4-VG7 represents a systemically viable, well-tolerated candidate for combating MDR ESKAPE infections.
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