氢键
溶剂化
配体(生物化学)
结晶学
化学
蛋白质配体
苯甲脒
分子
蛋白质结构
溶剂化壳
生物化学
受体
有机化学
酶
作者
J. Schiebel,Roberto Gaspari,Tobias Wulsdorf,K. Ngo,Christian Sohn,Tobias E. Schrader,Andrea Cavalli,Andreas Ostermann,A. Heine,G. Klebe
标识
DOI:10.1038/s41467-018-05769-2
摘要
Hydrogen bonds are key interactions determining protein-ligand binding affinity and therefore fundamental to any biological process. Unfortunately, explicit structural information about hydrogen positions and thus H-bonds in protein-ligand complexes is extremely rare and similarly the important role of water during binding remains poorly understood. Here, we report on neutron structures of trypsin determined at very high resolutions ≤1.5 Å in uncomplexed and inhibited state complemented by X-ray and thermodynamic data and computer simulations. Our structures show the precise geometry of H-bonds between protein and the inhibitors N-amidinopiperidine and benzamidine along with the dynamics of the residual solvation pattern. Prior to binding, the ligand-free binding pocket is occupied by water molecules characterized by a paucity of H-bonds and high mobility resulting in an imperfect hydration of the critical residue Asp189. This phenomenon likely constitutes a key factor fueling ligand binding via water displacement and helps improving our current view on water influencing protein-ligand recognition.
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