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1型人类免疫缺陷病毒中对蛋白酶抑制剂耐药的变异体的新型Gag-Pol移码位点。

Novel Gag-Pol frameshift site in human immunodeficiency virus type 1 variants resistant to protease inhibitors.

作者信息

Doyon L, Payant C, Brakier-Gingras L, Lamarre D

机构信息

Bio-Méga Research Division, Boehringer Ingelheim (Canada) Ltd., Laval, Quebec, Canada H7S 2G5.

出版信息

J Virol. 1998 Jul;72(7):6146-50. doi: 10.1128/JVI.72.7.6146-6150.1998.

Abstract

Human immunodeficiency virus type 1 (HIV-1) variants resistant to protease inhibitors have been shown to contain a mutation in the p1/p6 Gag precursor cleavage site. At the messenger RNA level, this mutation generates a U UUU UUU sequence that is reminiscent of the U UUU UUA sequence required for ribosomal frameshifting and Gag-Pol synthesis. To test whether the p1/p6 cleavage site mutation was generating a novel frameshift site, HIV sequences were inserted in translation vectors containing a chloramphenicol acetyltransferase (CAT) reporter gene requiring -1 frameshifting for expression. All sequences containing the original HIV frameshift site supported the synthesis of CAT but expression was increased 3- to 11-fold in the presence of the mutant p1/p6 sequence. When the original frameshift site was abolished by mutation, expression remained unchanged when using constructs containing the mutant p1/p6 sequence, whereas it was decreased 2- to 4.5-fold when using wild-type p1/p6 constructs. Similarly, when introduced into HIV molecular clones, the p1/p6 mutant sequence supported Gag-Pol synthesis and protease activity in the absence of the original frameshift site, indicating that this sequence could also promote ribosomal frameshifting in virus-expressing cells.

摘要

已证明对蛋白酶抑制剂耐药的1型人类免疫缺陷病毒(HIV-1)变体在p1/p6 Gag前体切割位点存在突变。在信使RNA水平上,这种突变产生了一个UUU UUU序列,这让人联想到核糖体移码和Gag-Pol合成所需的UUU UUA序列。为了测试p1/p6切割位点突变是否产生了一个新的移码位点,将HIV序列插入到含有氯霉素乙酰转移酶(CAT)报告基因的翻译载体中,该报告基因需要-1移码才能表达。所有含有原始HIV移码位点的序列都支持CAT的合成,但在存在突变的p1/p6序列时表达增加了3至11倍。当通过突变消除原始移码位点时,使用含有突变p1/p6序列的构建体时表达保持不变,而使用野生型p1/p6构建体时表达降低了2至4.5倍。同样,当引入HIV分子克隆时,在没有原始移码位点的情况下,p1/p6突变序列支持Gag-Pol合成和蛋白酶活性,这表明该序列也可以促进病毒表达细胞中的核糖体移码。

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