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首页> 外文期刊>Nature biotechnology >Human hematopoietic stem/progenitor cells modified by zinc-finger nucleases targeted to CCR5 control HIV-1 in vivo
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Human hematopoietic stem/progenitor cells modified by zinc-finger nucleases targeted to CCR5 control HIV-1 in vivo

机译:靶向CCR5的锌指核酸酶修饰的人类造血干/祖细胞在体内控制HIV-1

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摘要

CCR5 is the major HIV-1 co-receptor, and individuals homozygous for a 32-bp deletion in CCR5 are resistant to infection by CCR5-tropic HIV-1. Using engineered zinc-finger nucleases (ZFNs), we disrupted CCR5 in human CD34(+) hematopoietic stem/progenitor cells (HSPCs) at a mean frequency of 17% of the total alleles in a population. This procedure produces both mono- and bi-allelically disrupted cells. ZFN-treated HSPCs retained the ability to engraft NOD/SCID/IL2 gamma(null) mice and gave rise to polyclonal multi-lineage progeny in which CCR5 was permanently disrupted. Control mice receiving untreated HSPCs and challenged with CCR5-tropic HIV-1 showed profound CD4(+) T-cell loss. In contrast, mice transplanted with ZFN-modified HSPCs underwent rapid selection for CCR5(-/-) cells, had significantly lower HIV-1 levels and preserved human cells throughout their tissues. The demonstration that a minority of CCR5(-/-) HSPCs can populate an infected animal with HIV-1-resistant, CCR5(-/-) progeny supports the use of ZFN-modified autologous hematopoietic stem cells as a clinical approach to treating HIV-1.
机译:CCR5是主要的HIV-1受体,CCR5中32 bp缺失纯合的个体对CCR5嗜性HIV-1的感染具有抵抗力。使用工程的锌指核酸酶(ZFN),我们破坏了人类CD34(+)造血干/祖细胞(HSPC)中的CCR5,其平均频率为人群总等位基因的17%。此过程会产生单等位和双等位干扰的细胞。 ZFN处理的HSPC保留了植入NOD / SCID / IL2γ(null)小鼠的能力,并产生了多克隆多谱系后代,其中CCR5被永久破坏。接受未经处理的HSPC并用CCR5嗜性HIV-1攻击的对照小鼠显示出严重的CD4(+)T细胞丢失。相反,移植有ZFN修饰的HSPC的小鼠接受了CCR5(-/-)细胞的快速选择,HIV-1水平明显降低,并且在整个组织中保存了人类细胞。少数CCR5(-/-)HSPC可以在感染了动物的HIV-1耐药性,CCR5(-/-)后代中证实,ZFN修饰的自体造血干细胞可作为治疗HIV的临床方法-1。

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