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Orthoretroviral-like prototype foamy virus gag-pol expression is compatible with viral replication

机译:类逆转录病毒样泡沫病毒gag-pol的表达与病毒复制兼容

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Background Foamy viruses (FVs) unlike orthoretroviruses express Pol as a separate precursor protein and not as a Gag-Pol fusion protein. A unique packaging strategy, involving recognition of briding viral RNA by both Pol precursor and Gag as well as potential Gag-Pol protein interactions, ensures Pol particle encapsidation. Results Several Prototype FV (PFV) Gag-Pol fusion protein constructs were generated to examine whether PFV replication is compatible with an orthoretroviral-like Pol expression. During their analysis, non-particle-associated secreted Pol precursor protein was discovered in extracellular wild type PFV particle preparations of different origin, copurifying in simple virion enrichment protocols. Different analysis methods suggest that extracellular wild type PFV particles contain predominantly mature p85PR-RT and p40IN Pol subunits. Characterization of various PFV Gag-Pol fusion constructs revealed that PFV Pol expression in an orthoretroviral manner is compatible with PFV replication as long as a proteolytic processing between Gag and Pol proteins is possible. PFV Gag-Pol translation by a HIV-1 like ribosomal frameshift signal resulted in production of replication-competent virions, although cell- and particle-associated Pol levels were reduced in comparison to wild type. In-frame fusion of PFV Gag and Pol ORFs led to increased cellular Pol levels, but particle incorporation was only marginally elevated. Unlike that reported for similar orthoretroviral constructs, a full-length in-frame PFV Gag-Pol fusion construct showed wildtype-like particle release and infectivity characteristics. In contrast, in-frame PFV Gag-Pol fusion with C-terminal Gag ORF truncations or non-removable Gag peptide addition to Pol displayed wildtype particle release, but reduced particle infectivity. PFV Gag-Pol precursor fusion proteins with inactivated protease were highly deficient in regular particle release, although coexpression of p71Gag resulted in a significant copackaging of these proteins. Conclusions Non-particle associated PFV Pol appears to be naturally released from infected cells by a yet unknown mechanism. The absence of particle-associated Pol precursor suggests its rapid processing upon particle incorporation. Analysis of different PFV Gag-Pol fusion constructs demonstrates that orthoretroviral-like Pol expression is compatible with FV replication in principal as long as fusion protein processing is possible. Furthermore, unlike orthoretroviruses, PFV particle release and infectivity tolerate larger differences in relative cellular Gag/Pol levels.
机译:背景技术泡沫蛋白病毒(FVs)与正逆转录病毒不同,它把Pol表达为独立的前体蛋白,而不是Gag-Pol融合蛋白。独特的包装策略涉及通过Pol前体和Gag识别桥接病毒RNA以及潜在的Gag-Pol蛋白相互作用,从而确保Pol颗粒衣壳化。结果生成了几种原型FV(PFV)Gag-Pol融合蛋白构建体,以检查PFV复制是否与正逆转录病毒样Pol表达兼容。在他们的分析过程中,在不同来源的细胞外野生型PFV颗粒制剂中发现了非颗粒相关的分泌Pol前体蛋白,并通过简单的病毒体富集方案进行了共纯化。不同的分析方法表明,细胞外野生型PFV颗粒主要包含成熟的p85PR-RT和p40IN Pol亚基。各种PFV Gag-Pol融合构建体的表征表明,只要在Gag和Pol蛋白之间进行蛋白水解加工,就可以以原代逆转录病毒的方式表达PFV Pol与PFV复制兼容。尽管与野生型相比,细胞和颗粒相关的Pol水平降低了,但HIV-1的核糖体移码信号通过PFV Gag-Pol的翻译产生了具有复制能力的病毒体。 PFV Gag和Pol ORF的框内融合导致细胞Pol水平升高,但颗粒掺入仅略微提高。与报道类似的逆转录病毒构建体不同,全长的框内PFV Gag-Pol融合构建体显示出类似野生型的颗粒释放和感染性特征。相反,框内PFV Gag-Pol与C端Gag ORF截短或不可移除的Gag肽添加到Pol中融合显示出野生型颗粒释放,但颗粒感染性降低。带有灭活蛋白酶的PFV Gag-Pol前体融合蛋白在规则的颗粒释放方面非常缺乏,尽管p71Gag的共表达导致这些蛋白的显着共包装。结论非颗粒相关的PFV Pol似乎是通过未知的机制从感染细胞中自然释放的。不存在与颗粒相关的Pol前体表明其在掺入颗粒后可快速加工。对不同PFV Gag-Pol融合构建体的分析表明,只要可能进行融合蛋白加工,原逆转录病毒样Pol表达原则上就与FV复制兼容。此外,与正逆转录病毒不同,PFV颗粒的释放和感染性可耐受相对细胞Gag / Pol水平的较大差异。

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