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首页> 外文期刊>Nucleic acids research >Zinc-finger-nucleases mediate specific and efficient excision of HIV-1 proviral DNA from infected and latently infected human T cells
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Zinc-finger-nucleases mediate specific and efficient excision of HIV-1 proviral DNA from infected and latently infected human T cells

机译:锌指核酸酶介导从受感染和潜伏感染的人T细胞中特异性有效地切除HIV-1前病毒DNA

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HIV-infected individuals currently cannot be completely cured because existing antiviral therapy regimens do not address HIV provirus DNA, flanked by long terminal repeats (LTRs), already integrated into host genome. Here, we present a possible alternative therapeutic approach to specifically and directly mediate deletion of the integrated full-length HIV provirus from infected and latently infected human T cell genomes by using specially designed zinc-finger nucleases (ZFNs) to target a sequence within the LTR that is well conserved across all clades. We designed and screened one pair of ZFN to target the highly conserved HIV-1 5′-LTR and 3′-LTR DNA sequences, named ZFN-LTR. We found that ZFN-LTR can specifically target and cleave the full-length HIV-1 proviral DNA in several infected and latently infected cell types and also HIV-1 infected human primary cells in vitro. We observed that the frequency of excision was 45.9% in infected human cell lines after treatment with ZFN-LTR, without significant host-cell genotoxicity. Taken together, our data demonstrate that a single ZFN-LTR pair can specifically and effectively cleave integrated full-length HIV-1 proviral DNA and mediate antiretroviral activity in infected and latently infected cells, suggesting that this strategy could offer a novel approach to eradicate the HIV-1 virus from the infected host in the future.
机译:目前,感染HIV的个体无法完全治愈,因为现有的抗病毒治疗方案不能解决已经整合到宿主基因组中的带有长末端重复序列(LTR)的HIV原病毒DNA。在这里,我们提出了一种可能的替代治疗方法,通过使用经过特殊设计的锌指核酸酶(ZFN)靶向LTR中的序列,可以特异性地直接介导从感染和潜伏感染的人类T细胞基因组中整合的全长HIV前病毒的删除在所有进化枝中都保存得很好。我们设计并筛选了一对ZFN,以靶向高度保守的HIV-1 5'-LTR和3'-LTR DNA序列,称为ZFN-LTR。我们发现ZFN-LTR可以在多种感染和潜伏感染的细胞类型以及HIV-1感染的人类原代细胞中特异性靶向和切割全长HIV-1前病毒DNA。我们观察到,用ZFN-LTR处理后,感染的人类细胞系中切除的频率为45.9%,而没有明显的宿主细胞遗传毒性。综上所述,我们的数据表明,单个ZFN-LTR对可以特异性和有效地切割整合的全长HIV-1前病毒DNA并介导感染和潜伏感染细胞中的抗逆转录病毒活性,这表明该策略可以提供一种新颖的方法来根除将来会从受感染的宿主感染HIV-1病毒。

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