Department of Chemistry, Simon Fraser University, 8888 University Drive, Burnaby, BC, V5A 1S6, Canada.
Biomedical Sciences Research Complex, University of St Andrews, North Haugh, St Andrews, Fife, KY16 9ST, UK.
Nat Commun. 2018 Aug 13;9(1):3243. doi: 10.1038/s41467-018-05702-7.
Mechanism-based glycoside hydrolase inhibitors are carbohydrate analogs that mimic the natural substrate's structure. Their covalent bond formation with the glycoside hydrolase makes these compounds excellent tools for chemical biology and potential drug candidates. Here we report the synthesis of cyclohexene-based α-galactopyranoside mimics and the kinetic and structural characterization of their inhibitory activity toward an α-galactosidase from Thermotoga maritima (TmGalA). By solving the structures of several enzyme-bound species during mechanism-based covalent inhibition of TmGalA, we show that the Michaelis complexes for intact inhibitor and product have half-chair (H) conformations for the cyclohexene fragment, while the covalently linked intermediate adopts a flattened half-chair (H) conformation. Hybrid QM/MM calculations confirm the structural and electronic properties of the enzyme-bound species and provide insight into key interactions in the enzyme-active site. These insights should stimulate the design of mechanism-based glycoside hydrolase inhibitors with tailored chemical properties.
基于机制的糖苷水解酶抑制剂是模拟天然底物结构的碳水化合物类似物。它们与糖苷水解酶形成共价键,使这些化合物成为化学生物学和潜在药物候选物的优秀工具。在这里,我们报告了基于环己烯的α-半乳糖吡喃糖苷类似物的合成,以及它们对来自海洋栖热菌(TmGalA)的α-半乳糖苷酶的抑制活性的动力学和结构特征。通过在 TmGalA 的基于机制的共价抑制过程中解析几个酶结合物的结构,我们表明完整抑制剂和产物的米氏复合物对于环己烯片段具有半椅式(H)构象,而共价连接的中间体采用平面半椅式(H)构象。混合 QM/MM 计算证实了酶结合物的结构和电子性质,并提供了对酶活性位点中关键相互作用的深入了解。这些见解应该会激发针对具有定制化学性质的基于机制的糖苷水解酶抑制剂的设计。