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一种用于腺病毒早期区域E1和E4完全功能互补的基因转移载体-细胞系系统。

A gene transfer vector-cell line system for complete functional complementation of adenovirus early regions E1 and E4.

作者信息

Brough D E, Lizonova A, Hsu C, Kulesa V A, Kovesdi I

机构信息

GenVec Inc., Rockville, Maryland 20852, USA.

出版信息

J Virol. 1996 Sep;70(9):6497-501. doi: 10.1128/JVI.70.9.6497-6501.1996.

Abstract

The improvements to adenovirus necessary for an optimal gene transfer vector include the removal of virus gene expression in transduced cells, increased transgene capacity, complete replication incompetence, and elimination of replication-competent virus that can be produced during the growth of first-generation adenovirus vectors. To achieve these aims, we have developed a vector-cell line system for complete functional complementation of both adenovirus early region 1 (E1) and E4. A library of cell lines that efficiently complement both E1 and E4 was constructed by transforming 293 cells with an inducible E4-ORF6 expression cassette. These 293-ORF6 cell lines were used to construct and propagate viruses with E1 and E4 deleted. While the construction and propagation of AdRSV beta gal.11 (an E1-/E4- vector engineered to contain a deletion of the entire E4 coding region) were possible in 293-ORF6 cells, the yield of purified virus was depressed approximately 30-fold compared with that of E1- vectors. The debilitation in AdRSV beta gal.11 vector growth was found to correlate with reduced fiber protein and mRNA accumulation. AdCFTR.11A, a modified E1-/E4- vector with a spacer sequence placed between late region 5 and the right inverted terminal repeat, efficiently expressed fiber and grew with the same kinetic profile and virus yield as did E1- vectors. Moreover, purified AdCFTR.11A yields were equivalent to E1- vector levels. Since no overlapping sequences exist in the E4 regions of E1-/E4- vectors and 293-ORF6 cell lines, replication-competent virus cannot be generated by homologous recombination. In addition, these second-generation E1-/E4- vectors have increased transgene capacity and have been rendered virus replication incompetent outside of the new complementing cell lines.

摘要

优化基因转移载体所需对腺病毒进行的改进包括

去除转导细胞中的病毒基因表达、增加转基因容量、完全丧失复制能力以及消除在第一代腺病毒载体生长过程中可能产生的具有复制能力的病毒。为实现这些目标,我们开发了一种载体 - 细胞系系统,用于对腺病毒早期区域1(E1)和E4进行完全功能互补。通过用可诱导的E4 - ORF6表达盒转化293细胞,构建了一个能有效互补E1和E4的细胞系文库。这些293 - ORF6细胞系用于构建和繁殖缺失E1和E4的病毒。虽然在293 - ORF6细胞中可以构建和繁殖AdRSVβgal.11(一种经过工程改造的E1 - /E4 - 载体,其整个E4编码区域缺失),但与E1 - 载体相比,纯化病毒的产量降低了约30倍。发现AdRSVβgal.11载体生长的减弱与纤维蛋白和mRNA积累的减少有关。AdCFTR.11A是一种经过修饰的E1 - /E4 - 载体,在晚期区域5和右反向末端重复序列之间放置了一个间隔序列,它能有效表达纤维蛋白,并且生长动力学特征和病毒产量与E1 - 载体相同。此外,纯化后的AdCFTR.11A产量与E1 - 载体水平相当。由于E1 - /E4 - 载体和293 - ORF6细胞系的E4区域不存在重叠序列,同源重组不会产生具有复制能力的病毒。此外,这些第二代E1 - /E4 - 载体增加了转基因容量,并且在新的互补细胞系之外已丧失病毒复制能力。

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