化学
梭菌纲
抗毒素
全合成
立体化学
毒素
同族
去肽
微生物学
组合化学
细菌
艰难梭菌毒素A
生物化学
艰难梭菌毒素B
苯甲酰胺
离子载体
计算生物学
分子模型
作者
Xianxu Wang,Jianhua Luo,Bin Wang,Tao Long,Jingqing Li,Yangyushuang Xu,Shaozhong Zou,Qingqing Zeng,Yuyao Yin,Xilong Xu,Ting Han,Hui Wang,Zhen Liu,Liang Tao,Chao Li
摘要
Abstract Clostridioides difficile infection (CDI) is a severe diarrheal disease with substantial mortality, frequent recurrence, and limited treatment options. Here, we describe a scalable total synthesis of ecteinamycin, a polyether ionophore with anti-C. difficile activity, and its congener nonthmicin. Key steps include two electrochemical decarboxylative alkenylations, an enzyme-catalyzed anti-Baldwin cyclization, and a redox-economic asymmetric C–C bond formation. This synthesis enabled systematic biological evaluation. Nonthmicin showed potent and selective suppression of C. difficile, protected mammalian cells from toxin B (TcdB)-induced cytopathology, and displayed therapeutic efficacy in a mouse model of CDI. Preliminary structure–function studies suggest that the exo-methylene group of the tetronic acid motif is an important contributor to the observed exceptional potency. These findings challenge the prevailing view of polyether ionophores as broad-spectrum membrane-active agents and suggest new therapeutic possibilities for CDI.
科研通智能强力驱动
Strongly Powered by AbleSci AI