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首页> 外文期刊>Virology >The virus-associated human immunodeficiency virus type 1 Gag-Pol carrying an active protease domain in the matrix region is severely defective both in autoprocessing and in trans processing of gag particles
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The virus-associated human immunodeficiency virus type 1 Gag-Pol carrying an active protease domain in the matrix region is severely defective both in autoprocessing and in trans processing of gag particles

机译:病毒相关的人类免疫缺陷病毒1型Gag-Pol在基质区域中带有活性蛋白酶结构域,在gag颗粒的自动加工和反加工中均存在严重缺陷

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摘要

We have previously demonstrated that a human immunodeficiency virus (HIV) chimeric Gag protein containing a partial replacement of the matrix domain by the viral protease domain (PR) could undergo autoprocessing with no virus particle production [J. Virol. 74 (2000) 3418], To further analyze the effects of repositioned PR on vims particle production and Gag-Pol incorporation, we introduced the chimeric PR construct into a PR-negative Gag-Pol expression plasmid and coexpressed the resultant construct with a Pr55~(gag) expression plasmid (pGAG) in 293T cells. Analysis indicated that the chimeric PR was similar to native PR in that both could prevent virus particle production in cotransfections with an equivalent amount of pGAG plasmid DNA, suggesting an efficient trans processing of Pr55~(gag) by the chimeric PR. In cotransfections with the pGAG at a DNA ratio of 1:10 to 1:20, which resembles the normal intracellular expression ratio of Gag-Pol to Gag, Gag-Pol carrying the PR in the Gag coding region could undergo autoprocessing in cells and was incorporated into virus particles at a level about 20-40% of that of wild-type Gag-Pol. However, the incorporated chimeric Gag-Pol was unable to autocleave and unable to process the Gag particles properly, as mature particle-associated reverse transcriptase (RT) and p24~(gag) proteins were barely detected. Our data strongly suggest that positioning an active HIV PR in the matrix region significantly affects the PR-mediated virus particle maturation.
机译:先前我们已经证明,包含被病毒蛋白酶结构域(PR)部分取代基质结构域的人类免疫缺陷病毒(HIV)嵌合Gag蛋白可以进行自动加工而不会产生病毒颗粒[J.病毒。 74(2000)3418],为了进一步分析重新定位的PR对病毒颗粒产生和Gag-Pol掺入的影响,我们将嵌合PR构建体引入PR阴性的Gag-Pol表达质粒中,并与Pr55〜 (gag)表达质粒(pGAG)在293T细胞中。分析表明,嵌合PR与天然PR相似,因为两者都可以在与等量pGAG质粒DNA共转染时阻止病毒颗粒的产生,表明嵌合PR对Pr55〜(gag)进行了有效的反式加工。在DNA比率为1:10至1:20的pGAG共转染中,这类似于Gag-Pol与Gag的正常细胞内表达比率,在Gag编码区携带PR的Gag-Pol可以在细胞中进行自加工,并且掺入病毒颗粒的水平约为野生型Gag-Pol的20-40%。然而,由于几乎未检测到成熟的与颗粒相关的逆转录酶(RT)和p24〜(gag)蛋白,因此掺入的嵌合Gag-Pol无法自动裂解且无法正确处理Gag颗粒。我们的数据强烈表明,将活跃的HIV PR定位在基质区域中会显着影响PR介导的病毒颗粒成熟。

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