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首页> 外文期刊>Journal of Medicinal Chemistry >Rational Design of Thermodynamic and Kinetic Binding Profiles by Optimizing Surface Water Networks Coating Protein-Bound Ligands
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Rational Design of Thermodynamic and Kinetic Binding Profiles by Optimizing Surface Water Networks Coating Protein-Bound Ligands

机译:通过优化包被蛋白质的配体的表面水网络,合理设计热力学和动力学的结合曲线

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A previously studied congeneric series of thermolysin inhibitors addressing the solvent-accessible S-2' pocket with different hydrophobic substituents showed modulations of the surface water layers coating the protein-bound inhibitors. Increasing stabilization of water molecules resulted in an enthalpically more favorable binding signature, overall enhancing affinity. Based on this observation, we optimized the series by designing tailored P-2' substituents to improve and further stabilize the surface water network. MD simulations were applied to predict the putative water pattern around the bound ligands. Subsequently, the inhibitors were synthesized and characterized by high-resolution crystallography, microcalorimetry, and surface plasmon resonance. One of the designed inhibitors established the most pronounced water network of all inhibitors tested so far, composed of several fused water polygons, and showed 50-fold affinity enhancement with respect to the original methylated parent ligand. Notably, the inhibitor forming the most perfect water network also showed significantly prolonged residence time compared to the other tested inhibitors.
机译:以前研究过的同类系列的嗜热菌素抑制剂针对具有不同疏水性取代基的溶剂可及的S-2'囊袋,显示了覆盖蛋白结合抑制剂的表面水层的调制。水分子稳定度的提高导致在焓上更有利的结合特征,总体上增强了亲和力。基于此观察结果,我们通过设计量身定制的P-2'取代基来改善和进一步稳定地表水网络,从而优化了该系列。 MD模拟用于预测结合的配体周围的假定水模式。随后,合成了抑制剂,并通过高分辨率晶体学,微量热法和表面等离振子共振进行了表征。一种设计的抑制剂建立了迄今为止测试的所有抑制剂中最明显的水网络,该网络由几个融合的水多边形组成,相对于原始的甲基化母体配体,亲和力提高了50倍。值得注意的是,与其他测试抑制剂相比,形成最完善水网络的抑制剂也显示出明显延长的停留时间。

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