Yu X F, Dawson L, Tian C J, Flexner C, Dettenhofer M
Department of Molecular Microbiology and Immunology, Johns Hopkins University School of Hygiene and Public Health, Baltimore, Maryland 21205, USA.
J Virol. 1998 Apr;72(4):3412-7. doi: 10.1128/JVI.72.4.3412-3417.1998.
One of the crucial steps in the assembly of the human immunodeficiency virus type 1 (HIV-1) and other retroviruses is the incorporation and retention of all the key viral enzymes in released virions. The viral enzymes protease, reverse transcriptase, and integrase of HIV-1 are initially synthesized as Gag-Pol fusion polyproteins. It has been shown that the incorporation of Gag-Pol polyproteins during virus assembly requires the Gag domains that are shared by the Gag and Gag-Pol precursors. We now report that truncation of the C-terminal p6 domain of HIV-1 Gag, which is present in the Gag precursor but not in the Gag-Pol precursor, drastically reduced the amount of Pol proteins in the mutant virions. Mutations in the lentivirus conserved motif P(T/S)APP in p6 also drastically reduced the amount of Pol proteins in mutant virions. The steady-state levels of Gag-Pol precursors and cleaved Pol proteins in the transfected cells were not affected by mutations in p6. The incorporation of unprocessed Gag-Pol precursors into p6 mutant virions was detected when the viral protease was mutated, suggesting that the interactions among mutant Gag molecules and Gag-Pol precursors were not significantly affected. These results suggest that the p6 domain of HIV-1 Gag may play an important role in recruiting or retaining cleaved Pol proteins during virus assembly.
人类免疫缺陷病毒1型(HIV-1)及其他逆转录病毒组装过程中的关键步骤之一,是将所有关键病毒酶纳入并保留在释放的病毒颗粒中。HIV-1的病毒酶蛋白酶、逆转录酶和整合酶最初是以Gag-Pol融合多聚蛋白的形式合成的。研究表明,病毒组装过程中Gag-Pol多聚蛋白的纳入需要Gag和Gag-Pol前体共有的Gag结构域。我们现在报告,HIV-1 Gag的C末端p6结构域(存在于Gag前体但不存在于Gag-Pol前体中)的截短,极大地减少了突变病毒颗粒中Pol蛋白的数量。p6中慢病毒保守基序P(T/S)APP的突变也极大地减少了突变病毒颗粒中Pol蛋白的数量。p6中的突变不影响转染细胞中Gag-Pol前体和裂解的Pol蛋白的稳态水平。当病毒蛋白酶发生突变时,未加工的Gag-Pol前体纳入p6突变病毒颗粒的情况被检测到,这表明突变的Gag分子与Gag-Pol前体之间的相互作用没有受到显著影响。这些结果表明,HIV-1 Gag的p6结构域可能在病毒组装过程中招募或保留裂解的Pol蛋白方面发挥重要作用。