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耐药机制的研究进展:G48V/C95F 连接的 HIV-1 蛋白酶二聚体/沙奎那韦复合物的 X 射线结构分析。

Insights into the mechanism of drug resistance: X-ray structure analysis of G48V/C95F tethered HIV-1 protease dimer/saquinavir complex.

机构信息

Solid State Physics Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.

出版信息

Biochem Biophys Res Commun. 2010 Jun 11;396(4):1018-23. doi: 10.1016/j.bbrc.2010.05.049. Epub 2010 May 13.

Abstract

The mutation G48V in HIV-1 protease is a major resistance mutation against the drug saquinavir. Recently, G48V mutation is found to co-exist with the mutation C95F in AIDS patients treated with saquinavir. We report here the three-dimensional crystal structure of G48V/C95F tethered HIV-1 protease/saquinavir complex. The structure indicates following as the possible causes of drug resistance: (1) loss of direct van der Waals interactions between saquinavir and enzyme residues PHE-53 and PRO-1081, (2) loss of water-mediated hydrogen bonds between the carbonyl oxygen atoms in saquinavir and amide nitrogen atoms of flap residues 50 and 1050, (3) changes in inter-monomer interactions, which could affect the energetics of domain movements associated with inhibitor-binding, and (4) significant reduction in the stability of the mutant dimer. The present structure also provides a rationale for the clinical observation that the resistance mutations C95F/G48V/V82A occur as a cluster in AIDS patients.

摘要

HIV-1 蛋白酶中的突变 G48V 是对药物 saquinavir 的主要耐药突变。最近,在接受 saquinavir 治疗的艾滋病患者中发现 G48V 突变与突变 C95F 共存。我们在此报告 G48V/C95F 连接的 HIV-1 蛋白酶/saquinavir 复合物的三维晶体结构。该结构表明了耐药性的可能原因:(1)saquinavir 与酶残基 PHE-53 和 PRO-1081 之间直接范德华相互作用的丧失,(2)saquinavir 中羰基氧原子与 flap 残基 50 和 1050 的酰胺氮原子之间的水介导氢键的丧失,(3)单体间相互作用的变化,这可能影响与抑制剂结合相关的结构域运动的能量学,(4)突变二聚体的稳定性显著降低。目前的结构也为临床观察提供了依据,即耐药突变 C95F/G48V/V82A 在艾滋病患者中呈簇状出现。

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