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与广谱抑制剂TL-3复合的FIV/HIV嵌合蛋白酶的晶体结构。

Crystal structure of an FIV/HIV chimeric protease complexed with the broad-based inhibitor, TL-3.

作者信息

Heaslet Holly, Lin Ying-Chuan, Tam Karen, Torbett Bruce E, Elder John H, Stout C David

机构信息

Pfizer Global Research & Development, 2800 Plymouth Rd., Ann Arbor, MI 48105, USA.

出版信息

Retrovirology. 2007 Jan 9;4:1. doi: 10.1186/1742-4690-4-1.

Abstract

We have obtained the 1.7 A crystal structure of FIV protease (PR) in which 12 critical residues around the active site have been substituted with the structurally equivalent residues of HIV PR (12X FIV PR). The chimeric PR was crystallized in complex with the broad-based inhibitor TL-3, which inhibits wild type FIV and HIV PRs, as well as 12X FIV PR and several drug-resistant HIV mutants 1234. Biochemical analyses have demonstrated that TL-3 inhibits these PRs in the order HIV PR > 12X FIV PR > FIV PR, with Ki values of 1.5 nM, 10 nM, and 41 nM, respectively 234. Comparison of the crystal structures of the TL-3 complexes of 12X FIV and wild-typeFIV PR revealed theformation of additinal van der Waals interactions between the enzyme inhibitor in the mutant PR. The 12X FIV PR retained the hydrogen bonding interactions between residues in the flap regions and active site involving the enzyme and the TL-3 inhibitor in comparison to both FIV PR and HIV PR. However, the flap regions of the 12X FIV PR more closely resemble those of HIV PR, having gained several stabilizing intra-flap interactions not present in wild type FIV PR. These findings offer a structural explanation for the observed inhibitor/substrate binding properties of the chimeric PR.

摘要

我们获得了猫免疫缺陷病毒蛋白酶(PR)的1.7埃晶体结构,其中活性位点周围的12个关键残基已被HIV PR的结构等效残基取代(12X FIV PR)。嵌合PR与广谱抑制剂TL-3形成复合物结晶,TL-3可抑制野生型FIV和HIV PR,以及12X FIV PR和几种耐药HIV突变体1234。生化分析表明,TL-3抑制这些PR的顺序为HIV PR > 12X FIV PR > FIV PR,其Ki值分别为1.5 nM、10 nM和41 nM 234。12X FIV和野生型FIV PR的TL-3复合物晶体结构比较揭示了突变PR中酶抑制剂之间额外的范德华相互作用的形成。与FIV PR和HIV PR相比,12X FIV PR在瓣区残基与活性位点之间保留了涉及酶和TL-3抑制剂的氢键相互作用。然而,12X FIV PR的瓣区更类似于HIV PR,获得了野生型FIV PR中不存在的几种稳定的瓣内相互作用。这些发现为嵌合PR观察到的抑制剂/底物结合特性提供了结构解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adbd/1781954/3712216d5e93/1742-4690-4-1-1.jpg

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