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首页> 外文期刊>Gene therapy >Envelope fusion protein binding studies in an inducible model of retrovirus receptor expression and in CD34(+) cells emphasize limited transduction at low receptor levels.
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Envelope fusion protein binding studies in an inducible model of retrovirus receptor expression and in CD34(+) cells emphasize limited transduction at low receptor levels.

机译:在逆转录病毒受体表达的诱导模型和CD34(+)细胞中的信封融合蛋白结合研究强调了低受体水平的有限转导。

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Successful gene therapy for the treatment of heritable or acquired diseases typically requires high efficiency gene transfer and sustained transgene expression. Indirect evidence on the basis of RNA analysis and in vivo competitive repopulation experiments in animal models suggests a correlation between transduction efficiency and the abundance of retrovirus receptors on the hematopoietic target cell. However, transduction by oncoretroviral vectors is also subject to other factors such as target cell cycle status and the composition of the virus-containing medium, making it difficult to determine the level of receptor expression required for efficient transduction. In the present study we investigated the impact of receptor expression level on transduction by a vector with a gibbon ape leukemia virus (GALV) envelope protein in a tetracycline-inducible tissue culture model that allowed for the cell cycle-independent, regulated expression of the GALV receptor (Pit1) in otherwise non-susceptible NIH 3T3 cells. Up-regulation of receptor RNA expression by 4.5-fold resulted in a mean 150-fold increase in transduction efficiency. We then analyzed cell surface expression of the Pit1 receptor using a fusion protein consisting of GALV SU portion of the viral envelope protein linked to the human IgG Fc. These experiments showed that tetracycline-regulated receptor induction resulted in a dose-dependent increase in binding of fusion protein. At maximum induction fusion protein binding increased up to five-fold which paralleled the increase in RNA expression, and correlated with the improved transduction efficiency. Finally, studies of pseudotype-specific fusion protein binding to human CD34-enriched cells revealed increased expression of retrovirus receptors after cytokine stimulation, although overall receptor expression in CD34(+)cells remained lower than in fibroblast cell lines efficiently transduced by amphotropic and GALV vectors.
机译:成功的用于治疗遗传性或后天性疾病的基因疗法通常需要高效的基因转移和持续的转基因表达。在动物模型中基于RNA分析和体内竞争性繁殖实验的间接证据表明,转导效率与造血靶细胞上逆转录病毒受体的丰度之间存在相关性。然而,通过核型逆转录病毒载体进行的转导还受到其他因素的影响,例如靶细胞周期状态和含病毒培养基的组成,使得难以确定有效转导所需的受体表达水平。在本研究中,我们研究了在四环素诱导的组织培养模型中受体表达水平对长臂猿白血病病毒(GALV)包膜蛋白载体转导的影响,该模型允许细胞周期独立的,调控的GALV表达原本不敏感的NIH 3T3细胞中的受体(Pit1)。受体RNA表达上调4.5倍导致转导效率平均提高150倍。然后,我们使用由与人IgG Fc连接的病毒包膜蛋白的GALV SU部分组成的融合蛋白分析了Pit1受体的细胞表面表达。这些实验表明,四环素调节的受体诱导导致融合蛋白结合的剂量依赖性增加。在最大诱导融合蛋白结合增加至五倍,这与RNA表达的增加平行,并与提高的转导效率相关。最后,对与人CD34富集的细胞结合的假型特异性融合蛋白的研究表明,在细胞因子刺激后,逆转录病毒受体的表达增加,尽管CD34(+)细胞的总体受体表达仍低于两性和GALV载体有效转导的成纤维细胞系。 。

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