Replication potentials of HIV-1/HSIV in PBMCs from northern pig-tailed macaque (Macaca leonina)

Replication potentials of HIV-1/HSIV in PBMCs from northern pig-tailed macaque (Macaca leonina)
复制标题

HIV-1/HSIV 在北方猪尾猕猴 (Macaca leonina) PBMC 中的复制潜力

DOI:
10.11813/j.issn.0254-5853.2014.3.186
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发表时间:
2014-05-01
影响因子:
4.9
通讯作者:
Zheng, Yong-Tang
Zheng, Yong-Tang
中科院分区:
生物学2区
文献类型:
--
作者:
Lei, Ai-Hua;Zhang, Gao-Hong;Zheng, Yong-Tang

文献摘要

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北方猪尾猕猴(Macaca leonina)是一种独立的旧大陆猴种,我们以前发现,来自猕猴的PBMC对人类免疫缺陷病毒1型(HIV-1)易感,这可能是由于缺乏限制HIV-1复制的TRIMS蛋白。在这里,我们调查了6个实验室适应的HIV-1毒株和3个主要的HIV-1分离株在狮支原体PBMC中的感染潜力。结果表明,这些毒株的复制水平各不相同,但都很低,其中HIV-1(NL 4 -3)的复制能力最强。基于限制性因子APOBEC 3和HIV/SIV衍生的Vif蛋白之间存在物种特异性相互作用的大量证据,我们随后检查了Vif取代的HIV-1(HSIV)在M leonina PBMC中的复制潜力。值得注意的是,HSIV-vif(mac)和stHIV-1(sv)嵌合体,两种HIV-1(NL 4 -3)衍生的病毒编码SIVmac 239的病毒感染因子(Vif)蛋白,在M leonina细胞中稳健复制,这表明HSIV可以有效拮抗M leonina细胞中表达的APOBEC 3蛋白的抗病毒活性。因此,我们的数据表明,M leonina有潜力发展成为一个有前途的动物模型,人类艾滋病。
The northern pig-tailed macaque (Macaca leonina) has been identified as an independent species of Old World monkey, and we previously found that PBMCs from M leonina were susceptible to human immunodeficiency virus type 1 (HIV-1), which may be due to the absence of a TRIMS protein restricting HIV-1 replication. Here we investigated the infection potentials of six laboratory adapted HIV-1 strains and three primary HIV-1 isolates in PBMCs from M leonina. The results indicate that these strains are characterized by various but low replication levels, and among which, HIV-1(NL4-3) shows the highest replication ability. Based on the abundant evidence of species-specific interactions between restriction factors APOBEC3 and HIV/SIV-derived Vif protein, we subsequently examined the replication potentials of vif-substituted HIV-1 (HSIV) in M leonina PBMCs. Notably, HSIV-vif(mac) and stHIV-1(sv) chimeras, two HIV-1(NL4-3)-derived viruses encoding the viral infectivity factor (Vif) protein from SIVmac239, replicated robustly in cells from M leonina, which suggests that HSIV could effectively antagonize the antiviral activity of APOBEC3 proteins expressed in cells of M leonina. Therefore, our data demonstrate that M leonina has the potential to be developed into a promising animal model for human AIDS.