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基于10A1鼠白血病病毒的逆转录病毒包装细胞,用于生产利用多种细胞进入受体的载体。

Retrovirus packaging cells based on 10A1 murine leukemia virus for production of vectors that use multiple receptors for cell entry.

作者信息

Miller A D, Chen F

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98109, USA.

出版信息

J Virol. 1996 Aug;70(8):5564-71. doi: 10.1128/JVI.70.8.5564-5571.1996.

Abstract

10A1 murine leukemia virus can enter cells by using either of two different cell surface phosphate transport proteins, the gibbon ape leukemia virus receptor Glvr-1 (Pit-1) or the amphotropic retrovirus receptor Ram-1 (Pit-2). Glvr-1 and Ram-1 are widely expressed in different tissues, but the relative amounts of each are highly variable. We have developed retrovirus packaging cell lines based on 10A1 virus to take advantage of this dual receptor utilization to improve gene transfer rates in somatic cells of animals and humans, in which the relative levels of the two receptors are not always known. Optimization of the Env expression vector allowed the generation of packaging lines that produce helper-free vector titers up to 10(7)/ml. By interference analysis, we found that a 10A1 pseudotype retroviral vector can utilize Ram-1 for efficient entry into mouse, rat, and human cells and can utilize Glvr-1 for entry into mouse and human cells but not for entry into rat cells. The 10A1 pseudotype vector efficiently enters mouse cells by using Glvr-1, while entry into human cells is much less efficient. Thus, the 10A1 pseudotype packaging cells may be advantageous compared with the standard amphotropic packaging cells because vectors produced by the cells can use an additional receptor for cell entry. These packaging cells will also be useful to further explore the complicated pattern of receptor usage conferred by the 10A1 viral surface protein.

摘要

10A1鼠白血病病毒可通过两种不同的细胞表面磷酸盐转运蛋白之一进入细胞,即长臂猿白血病病毒受体Glvr-1(Pit-1)或嗜异性逆转录病毒受体Ram-1(Pit-2)。Glvr-1和Ram-1在不同组织中广泛表达,但各自的相对含量变化很大。我们基于10A1病毒开发了逆转录病毒包装细胞系,以利用这种双重受体利用特性来提高动物和人类体细胞中的基因转移率,而在这些体细胞中,两种受体的相对水平并不总是已知的。Env表达载体的优化使得能够产生无辅助病毒滴度高达10(7)/ml的包装细胞系。通过干扰分析,我们发现10A1假型逆转录病毒载体可利用Ram-1高效进入小鼠、大鼠和人类细胞,可利用Glvr-1进入小鼠和人类细胞,但不能进入大鼠细胞。10A1假型载体通过利用Glvr-1高效进入小鼠细胞,而进入人类细胞的效率则低得多。因此,与标准嗜异性包装细胞相比,10A1假型包装细胞可能具有优势,因为这些细胞产生的载体可以使用额外的受体进入细胞。这些包装细胞对于进一步探索10A1病毒表面蛋白赋予的复杂受体使用模式也将是有用的。

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