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Variability in a dominant block to SIV early reverse transcription in rhesus monkey cells predicts in vivo viral replication and time to death

机译:恒河猴细胞中SIV早期逆转录的主要障碍的变异性预测体内病毒复制和死亡时间

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摘要

While it has long been appreciated that there is considerable variability in host containment of HIV/SIV replication, the determinants of that variability are not fully understood. Previous studies demonstrated that the degree of permissivity of a macaque's peripheral blood mononuclear cells (PBMC) for infection with simian immunodeficiency virus (SIV) in vitro predicted that animal's peak plasma virus RNA levels following SIV infection in vivo. The present study was conducted to define the mechanisms underlying the variable intrinsic susceptibility of rhesus monkey PBMC to SIVsmE660 infection. In a cohort of 15 unrelated Indian-origin rhesus monkeys, infectability of PBMC of individual animals with SIVsmE660, as defined by tissue culture infectious dose (TCID50), varied by more than 3 logs and was a stable phenotype over time. Susceptibility of a monkey's PBMC to wild type SIVsmE660 infection correlated with the susceptibility of that monkey's PBMC to infection with VSV-G pseudotyped SIVsm543-GFP. Moreover, the permissivity of an individual monkey's PBMC for infection with this construct correlated with the permissivity of a B-lymphoblastoid cell line (B-LCL) generated from PBMC of the same animal. We found that the degree of intrinsic resistance of monkey B-LCL correlated with the copy number of early reverse transcription (ERT) SIV DNA. The resistance of monkey B-LCL to SIVsmE660 replication could be abrogated by preincubation of cells with the SIV virus-like particles (VLPs) and SIV resistance phenotype could be transferred to a SIV susceptible B-LCL through cell fusion. Finally, we observed a positive correlation between susceptibility of monkey B-LCL to SIV infection with a VSV-G pseudotyped SIV-GFP construct in vitro and both the peak plasma virus RNA levels in vivo and time to death following wild type SIV infection. These findings suggest that a dominant early RT restricting factor that can be saturated by SIV capsid may contribute to the variable resistance to SIV infection in rhesus monkey B-LCL and that this differential intrinsic susceptibility contributes to the clinical outcome of an SIV infection.
机译:长期以来人们一直认识到,HIV / SIV复制的宿主遏制存在很大的变异性,但尚未完全了解该变异性的决定因素。先前的研究表明,猕猴的外周血单个核细胞(PBMC)在体外感染猿猴免疫缺陷病毒(SIV)的允许程度预示了体内SIV感染后动物血浆血浆病毒RNA的峰值。进行本研究以定义恒河猴PBMC对SIVsmE660感染的可变固有易感性的潜在机制。在15个无关印度猕猴的队列中,个体动物的PBMC对SIVsmE660的感染性(由组织培养物感染剂量(TCID50)定义)变化超过3个对数,并且随时间呈稳定表型。猴子的PBMC对野生型SIVsmE660感染的敏感性与该猴子的PBMC对VSV-G假型SIVsm543-GFP感染的敏感性相关。而且,单个猴子的PBMC对该结构的感染的容许率与从同一动物的PBMC产生的B-淋巴母细胞系(B-LCL)的容许率相关。我们发现猴子B-LCL的内在抗性程度与早期逆转录(ERT)SIV DNA的拷贝数相关。猴B-LCL对SIVsmE660复制的抗性可以通过将细胞与SIV病毒样颗粒(VLP)预孵育而消除,并且SIV抗性表型可以通过细胞融合转移到SIV易感性B-LCL。最后,我们观察到猴子B-LCL对VSV-G假型SIV-GFP构建体的SIV感染的易感性与体内血浆病毒RNA的峰值水平以及野生型SIV感染后的死亡时间之间存在正相关。这些发现表明,可以被SIV衣壳饱和的主要的早期RT限制因子可能有助于恒河猴B-LCL对SIV感染的可变耐药性,并且这种不同的内在敏感性会导致SIV感染的临床结果。

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