Wang Yong, Chan Fung-Yi, Sun Ning, Lui Hok-Kiu, So Pui-Kin, Yan Siu-Cheong, Chan Kin-Fai, Chiou Jiachi, Chen Sheng, Abagyan Ruben, Leung Yun-Chung, Wong Kwok-Yin
Department of Applied Biology and Chemical Technology and State Key Laboratory of Chirosciences, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.
Chem Biol Drug Des. 2014 Dec;84(6):685-96. doi: 10.1111/cbdd.12361. Epub 2014 Aug 14.
Peptidoglycan glycosyltransferase (PGT) has been shown to be an important pharmacological target for the inhibition of bacterial cell wall biosynthesis. Structure-based virtual screening of about 3,000,000 commercially available compounds against the crystal structure of the glycosyltransferase (GT) domain of the Staphylococcus aureus penicillin-binding protein 2 (S. aureus PBP2) resulted in identification of an isatin derivative, 2-(3-(2-carbamimidoylhydrazono)-2-oxoindolin-1-yl)-N-(m-tolyl)acetamide (4) as a novel potential GT inhibitor. A series of 4 derivatives were synthesized. Several compounds showed more active antimicrobial activity than the initial hit compound 4, in particular 2-(3-(2-carbamimidoylhydrazono)-2-oxoindolin-1-yl)-N-(3-nitrophenyl)acetamide (4l), against Gram-positive Bacillus subtilis and S. aureus with MIC values of 24 and 48 μg/mL, respectively. Saturation transfer difference (STD) NMR study revealed that there is a binding contact between 4l and the GT domain of S. aureus PBP2. Competitive STD-NMR further proved that 4l and moenomycin A bind to GT domain in a competitive manner. Molecular docking study suggests a potential binding pocket of 4l in the GT domain of S. aureus PBP2. Taken together, compound 4l would provide a new scaffold for further development of potent GT inhibitors.
肽聚糖糖基转移酶(PGT)已被证明是抑制细菌细胞壁生物合成的重要药理学靶点。针对金黄色葡萄球菌青霉素结合蛋白2(S. aureus PBP2)的糖基转移酶(GT)结构域的晶体结构,对约300万种市售化合物进行基于结构的虚拟筛选,结果鉴定出一种异吲哚酮衍生物,即2-(3-(2-氨基亚氨基肼基)-2-氧代吲哚啉-1-基)-N-(间甲苯基)乙酰胺(4),它是一种新型潜在的GT抑制剂。合成了一系列4的衍生物。几种化合物表现出比初始命中化合物4更强的抗菌活性,特别是2-(3-(2-氨基亚氨基肼基)-2-氧代吲哚啉-1-基)-N-(3-硝基苯基)乙酰胺(4l),对革兰氏阳性枯草芽孢杆菌和金黄色葡萄球菌的最低抑菌浓度(MIC)值分别为24和48 μg/mL。饱和转移差(STD)核磁共振研究表明,4l与金黄色葡萄球菌PBP2的GT结构域之间存在结合接触。竞争性STD-NMR进一步证明,4l和莫能菌素A以竞争方式结合到GT结构域。分子对接研究表明4l在金黄色葡萄球菌PBP2的GT结构域中有一个潜在的结合口袋。综上所述,化合物4l将为进一步开发有效的GT抑制剂提供一个新的支架。