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Longitudinal within-host evolution of HIV Nef-mediated CD4, HLA and SERINC5 downregulation activity: a case study

机译:HIV NEF介导的CD4,HLA和SERIC35下调活动纵向内进化:一个案例研究

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The HIV accessory protein Nef downregulates the viral entry receptor CD4, the Human Leukocyte Antigen (HLA)-A and -B molecules, the Serine incorporator 5 (SERINC5) protein and other molecules from the infected cell surface, thereby promoting viral infectivity, replication and immune evasion. The nef locus also represents one of the most genetically variable regions in the HIV genome, and nef sequences undergo substantial evolution within a single individual over the course of infection. Few studies however have simultaneously characterized the impact of within-host nef sequence evolution on Nef protein function over prolonged timescales. Here, we isolated 50 unique Nef clones by single-genome amplification over an 11-year period from the plasma of an individual who was largely na?ve to antiretroviral treatment during this time. Together, these clones harbored nonsynonymous substitutions at 13% of nef's codons. We assessed their ability to downregulate cell-surface CD4, HLA and SERINC5 and observed that all three Nef functions declined modestly over time, where the reductions in CD4 and HLA downregulation (an average of 0.6% and 2.0% per year, respectively) achieved statistical significance. The results from this case study support all three Nef activities as being important to maintain throughout untreated HIV infection, but nevertheless suggest that, despite nef's mutational plasticity, within-host viral evolution can compromise Nef function, albeit modestly, over prolonged periods.
机译:HIV辅助蛋白NEF下调病毒进入受体CD4,人白细胞抗原(HLA)-A和-B分子,来自受感染的细胞表面的丝氨酸掺入剂5(SERINC5)蛋白和其他分子,从而促进病毒感染性,复制和免疫逃避。 Nef基因座还代表HIV基因组中最遗传的变性区域之一,并且NEF序列在感染过程中在单个个体内进行大量进化。然而,很少有研究同时表征了宿主内部序列演化的影响在长时间的时间尺度上的Nef蛋白质功能。在这里,我们通过在此时的血浆血浆的11年期间通过单基因组扩增分离了50个独特的NEF克隆,从而在此期间的抗逆转录病毒治疗。这些克隆在一起,占NEF密码子的13%的非唯一替换。我们评估了它们下调细胞表面CD4,HLA和SERIC3的能力,并观察到所有三种NEF功能随时间越来越多,CD4和HLA下调(平均每年平均每年0.6%和2.0%)实现统计意义。本案研究的结果支持所有三个NEF活动,以保持整个未经处理的艾滋病毒感染,但尽管存在NEF的突变可塑性,但在宿主内的病毒进化可以损害NEF功能,尽管长时间。

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