变构调节
药效团
化学
唑
活动站点
醛缩酶A
白色念珠菌
共价键
生物化学
果糖二磷酸醛缩酶
结合位点
结构-活动关系
立体化学
酶
抗真菌
微生物学
生物
有机化学
体外
作者
Wuqiang Wen,Hongxuan Cao,Yunyuan Huang,Jie Tu,Wan Chen,Jian Wan,Xinya Han,Han Chen,Jiaqi Liu,Li Rao,Su Chen,Chao Peng,Chunquan Sheng,Yanliang Ren
标识
DOI:10.1021/acs.jmedchem.1c02102
摘要
Fructose-1,6-bisphosphate aldolase (FBA) represents an attractive new antifungal target. Here, we employed a structure-based optimization strategy to discover a novel covalent binding site (C292 site) and the first-in-class covalent allosteric inhibitors of FBA from Candida albicans (CaFBA). Site-directed mutagenesis, liquid chromatography-mass spectrometry, and the crystallographic structures of APO-CaFBA, CaFBA-G3P, and C157S-2a4 revealed that S268 is an essential pharmacophore for the catalytic activity of CaFBA, and L288 is an allosteric regulation switch for CaFBA. Furthermore, most of the CaFBA covalent inhibitors exhibited good inhibitory activity against azole-resistant C. albicans, and compound 2a11 can inhibit the growth of azole-resistant strains 103 with the MIC80 of 1 μg/mL. Collectively, this work identifies a new covalent allosteric site of CaFBA and discovers the first generation of covalent inhibitors for fungal FBA with potent inhibitory activity against resistant fungi, establishing a structural foundation and providing a promising strategy for the design of potent antifungal drugs.
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