首页> 美国卫生研究院文献>The Journal of General Virology >Resistance to human immunodeficiency virus type 1 (HIV-1) generated by lentivirus vector-mediated delivery of the CCR5Δ32 gene despite detectable expression of the HIV-1 co-receptors
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Resistance to human immunodeficiency virus type 1 (HIV-1) generated by lentivirus vector-mediated delivery of the CCR5Δ32 gene despite detectable expression of the HIV-1 co-receptors

机译:慢病毒载体介导的CCR5Δ32基因递送产生的对人类免疫缺陷病毒1型(HIV-1)的耐药性尽管可以检测到HIV-1共受体的表达

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摘要

It has previously been demonstrated that there are two distinct mechanisms for genetic resistance to human immunodeficiency virus type 1 (HIV-1) conferred by the CCR5Δ32 gene: the loss of wild-type CCR5 surface expression and the generation of CCR5Δ32 protein, which interacts with CXCR4. To analyse the protective effects of long-term expression of the CCR5Δ32 protein, recombinant lentiviral vectors were used to deliver the CCR5Δ32 gene into human cell lines and primary peripheral blood mononuclear cells that had been immortalized by human T-cell leukemia virus type 1. Blasticidin S-resistant cell lines expressing the lentivirus-encoded CCR5Δ32 showed a significant reduction in HIV-1 Env-mediated fusion assays. It was shown that CD4+ T lymphocytes expressing the lentivirus-encoded CCR5Δ32 gene were highly resistant to infection by a primary but not by a laboratory-adapted X4 strain, suggesting different infectivity requirements. In contrast to previous studies that analysed the CCR5Δ32 protective effects in a transient expression system, this study showed that long-term expression of CCR5Δ32 conferred resistance to HIV-1 despite cell-surface expression of the HIV co-receptors. The results suggest an additional unknown mechanism for generating the CCR5Δ32 resistance phenotype and support the hypothesis that the CCR5Δ32 protein acts as an HIV-suppressive factor by altering the stoichiometry of the molecules involved in HIV-1 entry. The lentiviral-CCR5Δ32 vectors offer a method of generating HIV-resistant cells by delivery of the CCR5Δ32 gene that may be useful for stem cell- or T-cell-based gene therapy for HIV-1 infection.
机译:先前已经证明,CCR5Δ32基因赋予人类1型人类免疫缺陷病毒(HIV-1)遗传抗性有两种不同的机制:野生型CCR5表面表达的丧失和与之相互作用的CCR5Δ32蛋白的产生CXCR4。为了分析CCR5Δ32蛋白的长期表达的保护作用,使用重组慢病毒载体将CCR5Δ32基因传递到已被1型人T细胞白血病病毒无限增殖的人细胞系和原代外周血单核细胞中。表达慢病毒编码的CCR5Δ32的S耐药细胞系在HIV-1 Env介导的融合测定中显示出显着降低。结果表明,表达慢病毒编码的CCR5Δ32基因的CD4 + T淋巴细胞对原发性而非实验室适应性X4菌株的感染具有高度抗性,这表明需要不同的感染性。与以前的研究分析瞬态表达系统中CCR5Δ32的保护作用相反,该研究表明,尽管HIV共受体的细胞表面表达,CCR5Δ32的长期表达仍具有对HIV-1的抗性。结果表明,产生CCR5Δ32耐药表型的另一未知机制,并支持以下假设:CCR5Δ32蛋白通过改变与HIV-1进入有关的分子的化学计量而充当HIV抑制因子。慢病毒-CCR5Δ32载体提供了一种通过递送CCR5Δ32基因来产生HIV耐药细胞的方法,该基因可用于基于干细胞或T细胞的HIV-1感染基因治疗。

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