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基于底物包膜假说设计抗突变的HIV蛋白酶抑制剂

Design of mutation-resistant HIV protease inhibitors with the substrate envelope hypothesis.

作者信息

Chellappan Sripriya, Kiran Kumar Reddy G S, Ali Akbar, Nalam Madhavi N L, Anjum Saima Ghafoor, Cao Hong, Kairys Visvaldas, Fernandes Miguel X, Altman Michael D, Tidor Bruce, Rana Tariq M, Schiffer Celia A, Gilson Michael K

机构信息

Center for Advanced Research in Biotechnology, University of Maryland, Biotechnology Institute, Rockville, MD 20850, USA.

出版信息

Chem Biol Drug Des. 2007 May;69(5):298-313. doi: 10.1111/j.1747-0285.2007.00514.x.

Abstract

There is a clinical need for HIV protease inhibitors that can evade resistance mutations. One possible approach to designing such inhibitors relies upon the crystallographic observation that the substrates of HIV protease occupy a rather constant region within the binding site. In particular, it has been hypothesized that inhibitors which lie within this region will tend to resist clinically relevant mutations. The present study offers the first prospective evaluation of this hypothesis, via computational design of inhibitors predicted to conform to the substrate envelope, followed by synthesis and evaluation against wild-type and mutant proteases, as well as structural studies of complexes of the designed inhibitors with HIV protease. The results support the utility of the substrate envelope hypothesis as a guide to the design of robust protease inhibitors.

摘要

临床上需要能够规避耐药性突变的HIV蛋白酶抑制剂。设计此类抑制剂的一种可能方法依赖于晶体学观察结果,即HIV蛋白酶的底物在结合位点内占据一个相当恒定的区域。特别是,有人推测位于该区域内的抑制剂将倾向于抵抗临床相关突变。本研究通过对预计符合底物包膜的抑制剂进行计算设计,随后对野生型和突变型蛋白酶进行合成和评估,以及对设计的抑制剂与HIV蛋白酶复合物进行结构研究,首次对这一假设进行了前瞻性评估。结果支持底物包膜假说作为设计强效蛋白酶抑制剂指南的实用性。

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