化学
药效团
甲酰胺
赫尔格
吡咯
立体化学
支原体
霉酸
结构-活动关系
细胞毒性
铅化合物
结核分枝杆菌
体外
生物化学
肺结核
钾通道
有机化学
医学
病理
生物
生物物理学
作者
Hongyi Zhao,Yongxin Gao,Wei Li,Sheng Li,Keli Cui,Bin Wang,Lei Fu,Meng Gao,Ziyun Lin,Xiaowen Zou,Mary Jackson,Haihong Huang,Yu Lu,Dongfeng Zhang
标识
DOI:10.1021/acs.jmedchem.2c00718
摘要
In this work, pyrrole-2-carboxamides were designed with a structure-guided strategy based on the crystal structure of MmpL3 and a pharmacophore model. The structure–activity relationship studies revealed that attaching phenyl and pyridyl groups with electron-withdrawing substituents to the pyrrole ring and attaching bulky substituents to the carboxamide greatly improved anti-TB activity. Most compounds showed potent anti-TB activity (MIC < 0.016 μg/mL) and low cytotoxicity (IC50 > 64 μg/mL). Compound 32 displayed excellent activity against drug-resistant tuberculosis, good microsomal stability, almost no inhibition of the hERG K+ channel, and good in vivo efficacy. Furthermore, the target of the pyrrole-2-carboxamides was identified by measuring their potency against M. smegmatis expressing wild-type and mutated variants of the mmpL3 gene from M. tuberculosis (mmpL3tb) and determining their effect on mycolic acid biosynthesis using a [14C] acetate metabolic labeling assay. The present study provides new MmpL3 inhibitors that are promising anti-TB agents.
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