Ory D S, Neugeboren B A, Mulligan R C
Whitehead Institute for Biomedical Research, Massachusetts Institute of Technology, Cambridge 02142, USA.
Proc Natl Acad Sci U S A. 1996 Oct 15;93(21):11400-6. doi: 10.1073/pnas.93.21.11400.
We have generated a human 293-derived retroviral packaging cell line (293GPG) capable of producing high titers of recombinant Moloney murine leukemia virus particles that have incorporated the vesicular stomatitis virus G (VSV-G) protein. To achieve expression of the retroviral gag-pol polyprotein, the precise coding sequences for gag-pol were introduced into a vector which utilizes totally nonretroviral signals for gene expression. Because constitutive expression of the VSV-G protein is toxic in 293 cells, we used the tetR/VP 16 transactivator and teto minimal promoter system for inducible, tetracycline-regulatable expression of VSV-G. After stable transfection of the 293GPG packaging cell line with the MFG.SnlsLacZ retroviral vector construct, it was possible to readily isolate stable virus-producing cell lines with titers approaching 10(7) colony-forming units/ml. Transient transfection of 293GPG cells using a modified version of MFG.SnlsLacZ, in which the cytomegalovirus IE promoter was used to drive transcription of the proviral genome, led to titers of approximately 10(6) colony-forming units/ml. The retroviral/VSV-G pseudotypes generated using 293GPG cells were significantly more resistant to human complement than commonly used amphotropic vectors and could be highly concentrated (> 1000-fold). This new packaging cell line may prove to be particularly useful for assessing the potential use of retroviral vectors for direct in vivo gene transfer. The design of the cell line also provides at least theoretical advantages over existing cell lines with regard to the possible release of replication-competent virus.
我们构建了一种源自人293细胞的逆转录病毒包装细胞系(293GPG),它能够产生高滴度的重组莫洛尼鼠白血病病毒颗粒,这些颗粒整合了水泡性口炎病毒G(VSV-G)蛋白。为实现逆转录病毒gag-pol多蛋白的表达,将gag-pol的精确编码序列引入到一个利用完全非逆转录病毒信号进行基因表达的载体中。由于VSV-G蛋白的组成型表达在293细胞中具有毒性,我们使用tetR/VP16反式激活因子和teto最小启动子系统来诱导VSV-G的四环素调控表达。用MFG.SnlsLacZ逆转录病毒载体构建体稳定转染293GPG包装细胞系后,能够轻易分离出滴度接近10^7集落形成单位/毫升的稳定产病毒细胞系。使用MFG.SnlsLacZ的改良版本对293GPG细胞进行瞬时转染,其中巨细胞病毒IE启动子用于驱动前病毒基因组的转录,产生的滴度约为10^6集落形成单位/毫升。使用293GPG细胞产生的逆转录病毒/VSV-G假型对人补体的抗性明显高于常用的嗜性载体,并且可以高度浓缩(>1000倍)。这种新的包装细胞系可能被证明对于评估逆转录病毒载体直接体内基因转移的潜在用途特别有用。就可能释放具有复制能力的病毒而言,该细胞系的设计相对于现有细胞系也至少具有理论上的优势。