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配体的生物活性构象在设计针对丙型肝炎病毒 NS3 蛋白酶的药物中起着至关重要的作用。

Ligand bioactive conformation plays a critical role in the design of drugs that target the hepatitis C virus NS3 protease.

机构信息

Department of Chemistry, Boehringer-Ingelheim (Canada) Ltd., Research and Development , Laval, Québec H7S 2G5, Canada.

出版信息

J Med Chem. 2014 Mar 13;57(5):1777-89. doi: 10.1021/jm401338c. Epub 2013 Nov 8.

Abstract

A ligand-focused strategy employed NMR, X-ray, modeling, and medicinal chemistry to expose the critical role that bioactive conformation played in the design of a variety of drugs that target the HCV protease. The bioactive conformation (bound states) were determined for key inhibitors identified along our drug discovery pathway from the hit to clinical compounds. All adopt similar bioactive conformations for the common core derived from the hit peptide DDIVPC. A carefully designed SAR analysis, based on the advanced inhibitor 1 in which the P1 to P3 side chains and the N-terminal Boc were sequentially truncated, revealed a correlation between affinity and the relative predominance of the bioactive conformation in the free state. Interestingly, synergistic conformation effects on potency were also noted. Comparisons with clinical and recently marketed drugs from the pharmaceutical industry showed that all have the same core and similar bioactive conformations. This suggested that the variety of appendages discovered for these compounds also properly satisfy the bioactive conformation requirements and allowed for a large variety of HCV protease drug candidates to be designed.

摘要

采用配体为导向的策略,通过 NMR、X 射线、建模和药物化学,揭示了生物活性构象在设计针对 HCV 蛋白酶的各种药物中的关键作用。对于从命中到临床化合物的药物发现途径中确定的关键抑制剂,确定了其生物活性构象(结合态)。所有这些抑制剂都采用相似的生物活性构象,源于命中肽 DDIVPC 的共同核心。基于先进抑制剂 1 的精心设计的 SAR 分析,其中 P1 到 P3 侧链和 N 端 Boc 依次被截断,揭示了亲和力与自由状态下生物活性构象的相对优势之间的相关性。有趣的是,还注意到对效力的协同构象效应。与来自制药行业的临床和最近上市的药物进行比较表明,它们都具有相同的核心和相似的生物活性构象。这表明,为这些化合物发现的各种附加物也适当地满足了生物活性构象的要求,并允许设计出大量不同的 HCV 蛋白酶候选药物。

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