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Combined Inhibitor Free-Energy Landscape and Structural Analysis Reports on the Mannosidase Conformational Coordinate

机译:甘露糖苷酶构象坐标的组合抑制剂自由能态和结构分析报告

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摘要

Mannosidases catalyze the hydrolysis of a diverse range of polysaccharides and glycoconjugates, and the various sequence-based mannosidase families have evolved ingenious strategies to overcome the stereoelectronic challenges of mannoside chemistry. Using a combination of computational chemistry, inhibitor design and synthesis, and X-ray crystallography of inhibitor/enzyme complexes, it is demonstrated that mannoimidazole-type inhibitors are energetically poised to report faithfully on mannosidase transition-state conformation, and provide direct evidence for the conformational itinerary used by diverse mannosidases, including β-mannanases from families GH26 and GH113. Isofagomine-type inhibitors are poor mimics of transition-state conformation, owing to the high energy barriers that must be crossed to attain mechanistically relevant conformations, however, these sugar-shaped heterocycles allow the acquisition of ternary complexes that span the active site, thus providing valuable insight into active-site residues involved in substrate recognition.
机译:甘露糖苷酶催化多种多糖和糖缀合物的水解,并且各种基于序列的甘露糖苷酶家族已经进化出巧妙的策略来克服甘露糖苷化学的立体电子挑战。结合计算化学,抑制剂设计和合成以及抑制剂/酶复合物的X射线晶体学分析,证明了甘露糖咪唑型抑制剂在能量上准备如实地报道甘露糖苷酶的过渡态构象,并提供了直接的证据。各种甘露糖苷酶(包括GH26和GH113家族的β-甘露聚糖酶)使用的构象路线。由于必须通过高能垒才能获得与机械相关的构象,因此异黄花胺类抑制剂不能很好地模拟过渡态构象,但是,这些糖状杂环可以捕获跨越活性位点的三元复合物,从而提供对涉及底物识别的活性位点残基的宝贵见解。

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