首页> 美国卫生研究院文献>Journal of Virology >Prototype Foamy Virus Protease Activity Is Essential for Intraparticle Reverse Transcription Initiation but Not Absolutely Required for Uncoating upon Host Cell Entry
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Prototype Foamy Virus Protease Activity Is Essential for Intraparticle Reverse Transcription Initiation but Not Absolutely Required for Uncoating upon Host Cell Entry

机译:泡沫泡沫蛋白蛋白酶的活性对于粒子内逆转录启动是必不可少的但对于进入宿主细胞后的脱膜并不是绝对必需的

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摘要

Foamy viruses (FVs) are unique among retroviruses in performing genome reverse transcription (RTr) late in replication, resulting in an infectious DNA genome, and also in their unusual Pol biosynthesis and encapsidation strategy. In addition, FVs display only very limited Gag and Pol processing by the viral protease (PR) during particle morphogenesis and disassembly, both thought to be crucial for viral infectivity. Here, we report the generation of functional prototype FV (PFV) particles from mature or partially processed viral capsid and enzymatic proteins with infectivity levels of up to 20% of the wild type. Analysis of protein and nucleic acid composition, as well as infectivity, of virions generated from different Gag and Pol combinations (including both expression-optimized and authentic PFV open reading frames [ORFs]) revealed that precursor processing of Gag, but not Pol, during particle assembly is essential for production of infectious virions. Surprisingly, when processed Gag (instead of Gag precursor) was provided together with PR-deficient Pol precursor during virus production, infectious, viral DNA-containing particles were obtained, even when different vector or proviral expression systems were used. Although virion infectivity was reduced to 0.5 to 2% relative to that of the respective parental constructs, this finding overturns the current dogma in the FV literature that viral PR activity is absolutely essential at some point during target cell entry. Furthermore, it demonstrates that viral PR-mediated Gag precursor processing during particle assembly initiates intraparticle RTr. Finally, it shows that reverse transcriptase (RT) and integrase are enzymatically active in the Pol precursor within the viral capsid, thus enabling productive host cell infection.
机译:泡沫病毒(FVs)在逆转录病毒中是独特的,它们在复制后期执行基因组逆转录(RTr),从而导致感染性DNA基因组,并且还具有异常的Pol生物合成和衣壳化策略。此外,在颗粒形态发生和分解过程中,FV仅显示出非常有限的病毒蛋白酶(PR)进行的Gag和Pol加工,两者均被认为对病毒感染性至关重要。在这里,我们报告了从成熟或部分加工的病毒衣壳和酶蛋白产生的功能性原型FV(PFV)颗粒,其传染性水平高达野生型的20%。对由不同Gag和Pol组合(包括表达优化的和真实的PFV开放阅读框[ORF])生成的病毒粒子的蛋白质和核酸组成以及传染性的分析显示,在加工过程中,对Gag进行了前体加工,但对Pol没有进行加工颗粒组装对于生产感染性病毒粒子至关重要。令人惊讶地,当在病毒生产过程中将加工过的Gag(代替Gag前体)与PR缺失的Pol前体一起提供时,即使使用了不同的载体或前病毒表达系统,也获得了含有病毒DNA的感染性颗粒。尽管相对于各个亲本构建体而言,病毒体感染性降低至0.5%至2%,但这一发现推翻了FV文献中当前的教条,即病毒PR活性在靶细胞进入过程中的某个时刻绝对必不可少。此外,它表明在颗粒组装过程中病毒PR介导的Gag前体加工会启动颗粒内RTr。最后,它表明逆转录酶(RT)和整合酶在病毒衣壳内的Pol前体中具有酶促活性,因此可以进行生产性宿主细胞感染。

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