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首页> 外文期刊>Cell Host & Microbe >The ability of primate lentiviruses to degrade the monocyte restriction factor SAMHD1 preceded the birth of the viral accessory protein Vpx original.
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The ability of primate lentiviruses to degrade the monocyte restriction factor SAMHD1 preceded the birth of the viral accessory protein Vpx original.

机译:灵长类慢病毒降解单核细胞限制因子SAMHD1的能力先于病毒辅助蛋白Vpx original的诞生。

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The human SAMHD1 protein potently restricts lentiviral infection in dendritic cells and monocyte/macrophages but is antagonized by the primate lentiviral protein Vpx, which targets SAMHD1 for degradation. However, only two of eight primate lentivirus lineages encode Vpx, whereas its paralog, Vpr, is conserved across all extant primate lentiviruses. We find that not only multiple Vpx but also some Vpr proteins are able to degrade SAMHD1, and such antagonism led to dramatic positive selection of SAMHD1 in the primate subfamily Cercopithecinae. Residues that have evolved under positive selection precisely determine sensitivity to Vpx/Vpr degradation and alter binding specificity. By overlaying these functional analyses on a phylogenetic framework of Vpr and Vpx evolution, we can decipher the chronology of acquisition of SAMHD1-degrading abilities in lentiviruses. We conclude that vpr neofunctionalized to degrade SAMHD1 even prior to the birth of a separate vpx gene, thereby initiating an evolutionary arms race with SAMHD1.
机译:人SAMHD1蛋白有效地限制了树突状细胞和单核细胞/巨噬细胞中的慢病毒感染,但被灵长类慢病毒蛋白Vpx拮抗,后者以SAMHD1为降解目标。但是,八个灵长类慢病毒谱系中只有两个编码Vpx,而其旁系同源词Vpr在所有现存的灵长类慢病毒中都是保守的。我们发现,不仅多个Vpx,而且一些Vpr蛋白都能够降解SAMHD1,这种拮抗作用导致灵长类动物亚科 Cercopithecinae 中SAMHD1的显着阳性选择。在正选择下进化出的残基精确地确定了对Vpx / Vpr降解的敏感性并改变了结合特异性。通过将这些功能分析覆盖在Vpr和Vpx进化的系统发育框架上,我们可以解读慢病毒中SAMHD1降解能力获得的时间顺序。我们得出的结论是,甚至在单独的 vpx 基因诞生之前, vpr 新功能化即可降解SAMHD1,从而启动了与SAMHD1的进化军备竞赛。

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