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对HIV-1蛋白酶NL4-3耐药机制的结构洞察。

Structural insights into the mechanisms of drug resistance in HIV-1 protease NL4-3.

作者信息

Heaslet Holly, Kutilek Victoria, Morris Garrett M, Lin Ying-Chuan, Elder John H, Torbett Bruce E, Stout C David

机构信息

Department of Molecular Biology, The Scripps Research Institute, 10550 N. Torrey Pines Rd., La Jolla, CA 92037, USA.

出版信息

J Mol Biol. 2006 Mar 3;356(4):967-81. doi: 10.1016/j.jmb.2005.11.094. Epub 2005 Dec 20.

Abstract

The development of resistance to anti-retroviral drugs targeted against HIV is an increasing clinical problem in the treatment of HIV-1-infected individuals. Many patients develop drug-resistant strains of the virus after treatment with inhibitor cocktails (HAART therapy), which include multiple protease inhibitors. Therefore, it is imperative that we understand the mechanisms by which the viral proteins, in particular HIV-1 protease, develop resistance. We have determined the three-dimensional structure of HIV-1 protease NL4-3 in complex with the potent protease inhibitor TL-3 at 2.0 A resolution. We have also obtained the crystal structures of three mutant forms of NL4-3 protease containing one (V82A), three (V82A, M46I, F53L) and six (V82A, M46I, F53L, V77I, L24I, L63P) point mutations in complex with TL-3. The three protease mutants arose sequentially under ex vivo selective pressure in the presence of TL-3, and exhibit fourfold, 11-fold, and 30-fold resistance to TL-3, respectively. This series of protease crystal structures offers insights into the biochemical and structural mechanisms by which the enzyme can overcome inhibition by TL-3 while recovering some of its native catalytic activity.

摘要

在治疗HIV-1感染个体时,针对HIV的抗逆转录病毒药物耐药性的发展已成为一个日益严重的临床问题。许多患者在接受包含多种蛋白酶抑制剂的抑制剂鸡尾酒疗法(高效抗逆转录病毒疗法)治疗后,会产生病毒的耐药菌株。因此,我们必须了解病毒蛋白,特别是HIV-1蛋白酶产生耐药性的机制。我们已确定HIV-1蛋白酶NL4-3与强效蛋白酶抑制剂TL-3复合物的三维结构,分辨率为2.0埃。我们还获得了NL4-3蛋白酶三种突变形式与TL-3复合物的晶体结构,这三种突变形式分别含有一个(V82A)、三个(V82A、M46I、F53L)和六个(V82A、M46I、F53L、V77I、L24I、L63P)点突变。这三种蛋白酶突变体在TL-3存在的情况下,在体外选择压力下依次出现,并且分别对TL-3表现出4倍、11倍和30倍的耐药性。这一系列蛋白酶晶体结构为该酶在恢复其部分天然催化活性的同时能够克服TL-3抑制作用的生化和结构机制提供了见解。

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