High Consistency of Structure-Based Design and X-Ray Crystallography: Design, Synthesis, Kinetic Evaluation and Crystallographic Binding Mode Determination of Biphenyl- N-acyl-β-d-Glucopyranosylamines as Glycogen Phosphorylase Inhibitors

基于结构的设计与X射线晶体学的高度一致性:联苯-N-酰基-β-d-葡萄吡喃胺作为糖原磷酸化酶抑制剂的设计、合成、动力学评估和晶体学结合模式测定

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作者:Thomas Fischer, Symeon M Koulas, Anastasia S Tsagkarakou, Efthimios Kyriakis, George A Stravodimos, Vassiliki T Skamnaki, Panagiota G V Liggri, Spyros E Zographos, Rainer Riedl, Demetres D Leonidas1

Abstract

Structure-based design and synthesis of two biphenyl-N-acyl-β-d-glucopyranosylamine derivatives as well as their assessment as inhibitors of human liver glycogen phosphorylase (hlGPa, a pharmaceutical target for type 2 diabetes) is presented. X-ray crystallography revealed the importance of structural water molecules and that the inhibitory efficacy correlates with the degree of disturbance caused by the inhibitor binding to a loop crucial for the catalytic mechanism. The in silico-derived models of the binding mode generated during the design process corresponded very well with the crystallographic data.

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