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连接子应变和灵活性对基于片段的抑制剂设计的影响。

Impact of linker strain and flexibility in the design of a fragment-based inhibitor.

作者信息

Chung Suhman, Parker Jared B, Bianchet Mario, Amzel L Mario, Stivers James T

机构信息

Department of Pharmacology and Molecular Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

出版信息

Nat Chem Biol. 2009 Jun;5(6):407-13. doi: 10.1038/nchembio.163. Epub 2009 Apr 26.

Abstract

The linking together of molecular fragments that bind to adjacent sites on an enzyme can lead to high-affinity inhibitors. Ideally, this strategy would use linkers that do not perturb the optimal binding geometries of the fragments and do not have excessive conformational flexibility that would increase the entropic penalty of binding. In reality, these aims are seldom realized owing to limitations in linker chemistry. Here we systematically explore the energetic and structural effects of rigid and flexible linkers on the binding of a fragment-based inhibitor of human uracil DNA glycosylase. Analysis of the free energies of binding in combination with cocrystal structures shows that the flexibility and strain of a given linker can have a substantial impact on binding affinity even when the binding fragments are optimally positioned. Such effects are not apparent from inspection of structures and underscore the importance of linker optimization in fragment-based drug discovery efforts.

摘要

与酶上相邻位点结合的分子片段连接在一起可产生高亲和力抑制剂。理想情况下,该策略应使用不会干扰片段最佳结合几何形状且没有过度构象灵活性(以免增加结合的熵罚)的连接子。实际上,由于连接子化学方面的限制,这些目标很少能够实现。在此,我们系统地探究了刚性和柔性连接子对人尿嘧啶DNA糖基化酶基于片段的抑制剂结合的能量和结构影响。结合共晶体结构对结合自由能的分析表明,即使结合片段处于最佳位置,特定连接子的灵活性和应变仍可对结合亲和力产生重大影响。从结构检查中无法明显看出此类影响,这突出了连接子优化在基于片段的药物发现工作中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a83/3178264/bce7207dff10/nihms-97520-f0001.jpg

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