灰葡萄孢菌
模具
化学
杀菌剂
肌球蛋白
行动方式
交易激励
抗真菌
葡萄球菌炎
ATP酶
生物化学
肌球蛋白ATP酶
微尺度化学
微尺度热泳
生物物理学
表型
细胞生物学
衍生工具(金融)
生物
作者
Songtao Liu,Fei Liu,Xiyuan Zhu,Ziyang Yang,Wanting Zhang,Fangying Jia,Xinyan Chu,Renkai Lei,Linwei Li,Shu Xu,Wei Song,Jiaxing Yan,Jingjing Guo,Yu Chen,Xu Feng,Feng Zhang
标识
DOI:10.1021/acs.jafc.6c08415
摘要
Abstract Gray mold caused by Botrytis cinerea severely impacts global crop productivity. In this study, we identified B33 [(Z)-3-amino-N-(3-chloro-4-fluorobenzyl)-2-cyano-3-phenylacrylamide], a novel phenamacril derivative bearing a distinctive substitution pattern where the ester group is replaced by an amino group. As an unprecedented small-molecule inhibitor targeting B. cinerea myosin I (BcMyoI), it represents an unexplored antifungal mode of action for gray mold disease management. Combined assays including phenotypic screening, ATPase inhibition, and microscale thermophoresis (MST) confirmed that B33 binds BcMyoI, and molecular dynamics simulations revealed stable interactions with the conserved phenamacril-binding pocket. In the greenhouse experiment, the protective effect of B33 on strawberry leaves was comparable to that of the commercial fungicide boscalid. These findings establish BcMyoI as a novel antifungal target and present B33 as a potent agent with a unique mode of action, thus providing a promising alternative strategy to control gray mold and diverse phytopathogens
科研通智能强力驱动
Strongly Powered by AbleSci AI