化学
吡唑
菌核病
灰葡萄孢菌
EC50型
甲酰胺
生物测定
茄丝核菌
铅化合物
体外
生物活性
药理学
结构-活动关系
体内
立体化学
化学合成
生物化学
考古
古生物学
生物技术
历史
生物
医学
植物
遗传学
作者
Bin Yu,Bin Zhao,Zesheng Hao,Lei Chen,Lixin Cao,Xiaofeng Guo,Nailou Zhang,Dongyan Yang,Liang‐Fu Tang,Zhijin Fan
标识
DOI:10.1016/j.ejmech.2021.113230
摘要
Abstract To continue our ongoing studies on discovery of new potent antifungal leads, 43 novel pyrazole-aromatic containing carboxamides were rationally designed and synthesized. Bioassays indicated that most target compounds displayed good in vitro antifungal activities against Botrytis cinerea, Rhizoctonia cerealis and Sclerotinia sclerotiorum and in vivo antifungal activity against R. solani. Compound 11ea exhibited the most significant in vitro activity against R. cerealis (EC50 = 0.93 μg/mL) with about 2-fold more potent than a previously reported lead compound A1 (EC50 = 2.01 μg/mL), and about 11-fold more potent than the positive control/commercial succinate dehydrogenase inhibitor thifluzamide (EC50 = 23.09 μg/mL). Structure-activity relationship analysis and molecular docking simulations indicated that the presence of difluoromethyl pyrazole-(m-benzene) carboxamide scaffold obviously increased the antifungal activity. The further enzymatic bioassay showed that both thifluzamide and compound 11ea displayed excellent SDH inhibitory effects, and fluorescence quenching analysis suggested that they may share the same target SDH.
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