首页> 美国卫生研究院文献>PLoS Pathogens >SIVcol Nef counteracts SERINC5 by promoting its proteasomal degradation but does not efficiently enhance HIV-1 replication in human CD4+ T cells and lymphoid tissue
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SIVcol Nef counteracts SERINC5 by promoting its proteasomal degradation but does not efficiently enhance HIV-1 replication in human CD4+ T cells and lymphoid tissue

机译:SIVcol Nef通过促进SERINC5的蛋白酶体降解来抵消SERINC5但不能有效地增强人CD4 + T细胞和淋巴组织中的HIV-1复制

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摘要

SERINC5 is a host restriction factor that impairs infectivity of HIV-1 and other primate lentiviruses and is counteracted by the viral accessory protein Nef. However, the importance of SERINC5 antagonism for viral replication and cytopathicity remained unclear. Here, we show that the Nef protein of the highly divergent SIVcol lineage infecting mantled guerezas (Colobus guereza) is a potent antagonist of SERINC5, although it lacks the CD4, CD3 and CD28 down-modulation activities exerted by other primate lentiviral Nefs. In addition, SIVcol Nefs decrease CXCR4 cell surface expression, suppress TCR-induced actin remodeling, and counteract Colobus but not human tetherin. Unlike HIV-1 Nef proteins, SIVcol Nef induces efficient proteasomal degradation of SERINC5 and counteracts orthologs from highly divergent vertebrate species, such as Xenopus frogs and zebrafish. A single Y86F mutation disrupts SERINC5 and tetherin antagonism but not CXCR4 down-modulation by SIVcol Nef, while mutation of a C-proximal di-leucine motif has the opposite effect. Unexpectedly, the Y86F change in SIVcol Nef had little if any effect on viral replication and CD4+ T cell depletion in preactivated human CD4+ T cells and in ex vivo infected lymphoid tissue. However, SIVcol Nef increased virion infectivity up to 10-fold and moderately increased viral replication in resting peripheral blood mononuclear cells (PBMCs) that were first infected with HIV-1 and activated three or six days later. In conclusion, SIVcol Nef lacks several activities that are conserved in other primate lentiviruses and utilizes a distinct proteasome-dependent mechanism to counteract SERINC5. Our finding that evolutionarily distinct SIVcol Nefs show potent anti-SERINC5 activity supports a relevant role of SERINC5 antagonism for viral fitness in vivo. Our results further suggest this Nef function is particularly important for virion infectivity under conditions of limited CD4+ T cell activation.
机译:SERINC5是一种宿主限制性因子,可削弱HIV-1和其他灵长类慢病毒的感染力,并被病毒辅助蛋白Nef抵消。然而,SERINC5拮抗作用对病毒复制和细胞病变的重要性仍不清楚。在这里,我们显示了高度分化的SIVcol谱系感染披覆的guerezas(Colobus guereza)的Nef蛋白是SERINC5的有效拮抗剂,尽管它缺乏其他灵长类慢病毒Nef发挥的CD4,CD3和CD28下调活性。此外,SIVcol Nefs降低CXCR4细胞表面表达,抑制TCR诱导的肌动蛋白重塑,并抵消Colobus,但不能抵消人Tetherin。与HIV-1 Nef蛋白不同,SIVcol Nef可诱导SERINC5高效蛋白酶体降解,并抵消高度分化的脊椎动物物种(如非洲爪哇蛙和斑马鱼)的直系同源物。单个Y86F突变会破坏SERINC5和系链蛋白的拮抗作用,但不会破坏SIVcol Nef对CXCR4的下调作用,而C-近端双亮氨酸基序的突变则具有相反的作用。出乎意料的是,SIVcol Nef中的Y86F变化对预活化的人CD4 + T细胞和离体感染的淋巴组织中的病毒复制和CD4 + T细胞耗竭几乎没有影响。但是,SIVcol Nef在静止的外周血单个核细胞(PBMC)中将病毒粒子的感染力提高了10倍,并适度增加了病毒复制,这些细胞最初被HIV-1感染并在三六天后被激活。总之,SIVcol Nef缺乏其他灵长类慢病毒中保守的几种活性,并且利用独特的蛋白酶体依赖性机制来抵消SERINC5。我们的发现表明,进化上不同的SIVcol Nefs显示出强大的抗SERINC5活性,支持SERINC5拮抗作用对体内病毒适应性的相关作用。我们的结果进一步表明,在有限的CD4 + T细胞活化条件下,这种Nef功能对于病毒体感染特别重要。

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