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首页> 外文期刊>Retrovirology >SIVSM/HIV-2 Vpx proteins promote retroviral escape from a proteasome-dependent restriction pathway present in human dendritic cells
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SIVSM/HIV-2 Vpx proteins promote retroviral escape from a proteasome-dependent restriction pathway present in human dendritic cells

机译:SIV SM / HIV-2 Vpx蛋白促进人类树突状细胞中蛋白酶体依赖性限制途径的逆转录病毒逃逸

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Background Vpx is a non-structural protein coded by members of the SIVSM/HIV-2 lineage that is believed to have originated by duplication of the common vpr gene present in primate lentiviruses. Vpx is incorporated into virion particles and is thus present during the early steps of viral infection, where it is thought to drive nuclear import of viral nucleoprotein complexes. We have previously shown that Vpx is required for SIVMAC-derived lentiviral vectors (LVs) infection of human monocyte-derived dendritic cells (DCs). However, since the requirement for Vpx is specific for DCs and not for other non-dividing cell types, this suggests that Vpx may play a role other than nuclear import. Results Here, we show that the function of Vpx in the infection of DCs is conserved exclusively within the SIVSM/HIV-2 lineage. At a molecular level, Vpx acts by promoting the accumulation of full length viral DNA. Furthermore, when supplied in target cells prior to infection, Vpx exerts a similar effect following infection of DCs with retroviruses as divergent as primate and feline lentiviruses and gammaretroviruses. Lastly, the effect of Vpx overlaps with that of the proteasome inhibitor MG132 in DCs. Conclusion Overall, our results support the notion that Vpx modifies the intracellular milieu of target DCs to facilitate lentiviral infection. The data suggest that this is achieved by promoting viral escape from a proteasome-dependent pathway especially detrimental to viral infection in DCs.
机译:背景Vpx是由SIVSM / HIV-2谱系成员编码的一种非结构蛋白,据信是由灵长类慢病毒中存在的常见vpr基因的复制引起的。 Vpx被并入病毒粒子中,因此存在于病毒感染的早期阶段,在该阶段它被认为会驱动病毒核蛋白复合物的核输入。先前我们已经证明,Vpx是人类单核细胞衍生的树突状细胞(DC)的SIVMAC衍生的慢病毒载体(LV)感染所必需的。但是,由于对Vpx的要求是特定于DC的,而不是针对其他非分裂的细胞类型的,因此这表明Vpx可能起着除核输入以外的作用。结果在这里,我们显示Vpx在DC感染中的功能仅在SIVSM / HIV-2谱系内保守。在分子水平上,Vpx通过促进全长病毒DNA的积累发挥作用。此外,当感染前在靶细胞中提供Vpx时,Vpx在DC感染与灵长类和猫慢病毒和伽玛逆转录病毒不同的逆转录病毒后也会发挥相似的作用。最后,在DC中,Vpx的作用与蛋白酶体抑制剂MG132的作用重叠。结论总的来说,我们的研究结果支持Vpx修饰靶DC的细胞内环境以促进慢病毒感染的观点。数据表明,这是通过促进病毒从蛋白酶体依赖性途径逃逸来实现的,特别是对DC中的病毒感染有害。

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