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用于人类细胞基因转移的双嗜性逆转录病毒载体系统。

Amphotropic retrovirus vector system for human cell gene transfer.

作者信息

Sorge J, Wright D, Erdman V D, Cutting A E

出版信息

Mol Cell Biol. 1984 Sep;4(9):1730-7. doi: 10.1128/mcb.4.9.1730-1737.1984.

Abstract

Retroviral vectors have been constructed for gene transfer in mammalian and avian cells, however most retroviral vector systems are complicated by the spread of a replication-competent helper virus. This problem has been circumvented by segregating the viral genome into cis- and trans-acting components. By establishing helper cell lines that produce the trans-acting viral gene products, one can propagate the cis-acting component in them and harvest defective viral particles that contain only the cis-acting component. The cis-acting component can provide a useful vehicle for the highly efficient transfer of genes into target cells. The defective vector systems described to date, however, are restricted in host range to murine, avian, rat, and dog cells. We describe a helper-free vector system based entirely on an amphotropic murine virus with a wide mammalian host range, including the ability to carry out efficient gene transfer into human cells. We also describe a double mutation constructed in the trans-acting genome which reduces the frequency of replication-competent recombinant viruses to undetectable levels.

摘要

逆转录病毒载体已被构建用于在哺乳动物和禽类细胞中进行基因转移,然而大多数逆转录病毒载体系统因具有复制能力的辅助病毒的传播而变得复杂。通过将病毒基因组分离为顺式作用和反式作用成分,这个问题已得到解决。通过建立产生反式作用病毒基因产物的辅助细胞系,人们可以在其中繁殖顺式作用成分,并收获仅包含顺式作用成分的缺陷病毒颗粒。顺式作用成分可为将基因高效转移到靶细胞中提供有用的载体。然而,迄今为止所描述的缺陷载体系统在宿主范围上仅限于小鼠、禽类、大鼠和犬类细胞。我们描述了一种完全基于具有广泛哺乳动物宿主范围的嗜异性鼠病毒的无辅助病毒载体系统,包括能够将基因高效转移到人类细胞中的能力。我们还描述了在反式作用基因组中构建的双重突变,该突变可将具有复制能力的重组病毒的频率降低到无法检测的水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f12/368980/3d0862ae48f9/molcellb00151-0072-a.jpg

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