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四氢嘧啶酮的设计、合成及评估:非肽类HIV蛋白酶抑制剂通用方法的一个实例

Design, synthesis, and evaluation of tetrahydropyrimidinones as an example of a general approach to nonpeptide HIV protease inhibitors.

作者信息

De Lucca G V, Liang J, Aldrich P E, Calabrese J, Cordova B, Klabe R M, Rayner M M, Chang C H

机构信息

DuPont Merck Pharmaceutical Company, Wilmington, Delaware 19880-0500, USA.

出版信息

J Med Chem. 1997 May 23;40(11):1707-9. doi: 10.1021/jm970081i.

Abstract

Re-examination of the design of the cyclic urea class of HIV protease (HIVPR) inhibitors suggests a general approach to designing novel nonpeptide cyclic HIVPR inhibitors. This process involves the inversion of the stereochemical centers of the core transition-state isostere of the linear HIVPR inhibitors and cyclization of the resulting core using an appropriate cyclizing reagent. As an example, this process is applied to the diamino alcohol class of HIVPR inhibitors to give tetrahydropyrimidinones. Conformational analysis of the tetrahydropyrimidinones and modeling of its interaction with the active site of HIVPR suggested modifications which led to very potent inhibitors of HIVPR (24 with a Ki = 0.018 nM). The X-ray crystallographic structure of the complex of 24 with HIVPR confirms the analysis and modeling predictions. The example reported in this study and other examples that are cited indicate that this process may be generally applicable to other linear inhibitors.

摘要

对环脲类HIV蛋白酶(HIVPR)抑制剂设计的重新审视,提出了一种设计新型非肽环HIVPR抑制剂的通用方法。这个过程包括将线性HIVPR抑制剂的核心过渡态电子等排体的立体化学中心进行反转,并使用合适的环化试剂将所得核心进行环化。例如,这个过程应用于HIVPR抑制剂的二氨基醇类,得到四氢嘧啶酮。对四氢嘧啶酮的构象分析及其与HIVPR活性位点相互作用的建模表明了一些修饰,这些修饰产生了非常有效的HIVPR抑制剂(24号化合物,Ki = 0.018 nM)。24号化合物与HIVPR复合物的X射线晶体学结构证实了分析和建模预测。本研究报道的例子以及所引用的其他例子表明,这个过程可能普遍适用于其他线性抑制剂。

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