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首页> 外文期刊>Nature Microbiology >HIV-2/SIV viral protein X counteracts HUSH repressor complex
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HIV-2/SIV viral protein X counteracts HUSH repressor complex

机译:HIV-2 / SIV病毒蛋白x抵消了嘘声阻遏物复合物

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To evade host immune defences, human immunodeficiency viruses 1 and 2 (HIV-1 and HIV-2) have evolved auxiliary proteins that target cell restriction factors. Viral protein X (Vpx) from the HIV-2/SIVsmm lineage enhances viral infection by antagonizing SAMHD1 (refs(1,2)), but this antagonism is not sufficient to explain all Vpx phenotypes. Here, through a proteomic screen, we identified another Vpx target-HUSH (TASOR, MPP8 and periphilin)-a complex involved in position-effect variegation(3). HUSH downregulation by Vpx is observed in primary cells and HIV-2-infected cells. Vpx binds HUSH and induces its proteasomal degradation through the recruitment of the DCAF1 ubiquitin ligase adaptor, independently from SAMHD1 antagonism. As a consequence, Vpx is able to reactivate HIV latent proviruses, unlike Vpx mutants, which are unable to induce HUSH degradation. Although antagonism of human HUSH is not conserved among all lentiviral lineages including HIV-1, it is a feature of viral protein R (Vpr) from simian immunodeficiency viruses (SIVs) of African green monkeys and from the divergent SIV of l'Hoest's monkey, arguing in favour of an ancient lentiviral species-specific vpx/vpr gene function. Altogether, our results suggest the HUSH complex as a restriction factor, active in primary CD4(+) T cells and counteracted by Vpx, therefore providing a molecular link between intrinsic immunity and epigenetic control.
机译:为了逃避宿主免疫防御,人的免疫缺陷病毒1和2(HIV-1和HIV-2)已经进化了靶向细胞限制因子的辅助蛋白。来自HIV-2 / SIVSMM谱系的病毒蛋白X(VPX)通过拮抗SamHD1增强病毒感染(refs(1,2)),但这种拮抗作用不足以解释所有VPX表型。这里,通过蛋白质组学筛选,我们鉴定了涉及位置效应变形(3)的综合的另一VPX靶瘤(促助剂,MPP8和Periphilin)-A复合物。在原发性细胞和HIV-2感染细胞中观察到VPX的静脉下调。 VPX通过募集DCAF1泛素连接酶适配器,独立于Samhd1拮抗作用,诱导其蛋白酶体降解。因此,与VPX突变体不同,VPX能够重新激活HIV潜潜艇,这是无法诱导血栓降解的。尽管在包括HIV-1的所有慢病毒谱系中,人类HUSH的拮抗作用是不保守的,但它是来自非洲绿猴的SIMIAN免疫缺陷病毒(SIV)的病毒蛋白R(VPR)的特征,以及L'HOEST猴子的不同SIV,争论有利于古老的慢病毒物种特异性VPX / VPR基因功能。完全,我们的结果表明,在原发性CD4(+)T细胞中有效的肿仓复合物,并由VPX抵消,因此在内在免疫和表观遗传控制之间提供分子联系。

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