Kuate Seraphin, Wagner Ralf, Uberla Klaus
Institute of Virology, University of Leipzig, Germany.
J Gene Med. 2002 Jul-Aug;4(4):347-55. doi: 10.1002/jgm.290.
Lentiviral vectors allow gene transfer into non-dividing cells. Further development of these vector systems requires stable packaging cell lines that enable adequate safety testing.
To generate a packaging cell line for vectors based on simian immunodeficiency virus (SIV), expression plasmids were constructed that contain the codon-optimized gag-pol gene of SIV and the gene for the G protein of vesicular stomatitis virus (VSV-G) under the control of an ponasterone-inducible promoter. Stable cell lines expressing these packaging constructs were established and characterized.
The RT activity and vector titers of cell clones stably transfected with the inducible gag-pol expession plasmid could be induced by ponasterone by more than a factor of 1000. One of these clones was subsequently transfected with the ponasterone-inducible VSV-G expression plasmid to generate packaging cells. Clones of the packaging cells were screened for vector production by infection with an SIV vector and subsequent induction by ponasterone. In the supernatant of selected ponasterone-induced producer clones vector titers of more than 1x10(5) transducing units/ml were obtained. Producer cell clones were stable for at least five months, as tested by vector production.
The packaging cells described should be suitable for most preclinical applications of SIV-based vectors. By avoiding regions of high homology between the vector and the packaging constructs, the design of the SIV packaging cell line should reduce the risk of transfer of packaging genes to target cells and at the same time provide flexibility with respect to the SIV vector constructs that can be packaged.
慢病毒载体可将基因导入非分裂细胞。这些载体系统的进一步发展需要稳定的包装细胞系,以进行充分的安全性测试。
为了构建基于猿猴免疫缺陷病毒(SIV)的载体包装细胞系,构建了表达质粒,其包含密码子优化的SIV gag-pol基因和水疱性口炎病毒(VSV-G)G蛋白基因,受ponasterone诱导型启动子控制。建立并鉴定了表达这些包装构建体的稳定细胞系。
用诱导型gag-pol表达质粒稳定转染的细胞克隆的逆转录酶(RT)活性和载体滴度可被ponasterone诱导提高1000倍以上。随后将其中一个克隆用ponasterone诱导型VSV-G表达质粒转染以产生包装细胞。通过用SIV载体感染并随后用ponasterone诱导来筛选包装细胞的克隆以检测载体产生情况。在选定的经ponasterone诱导的生产克隆的上清液中,获得了超过1×10⁵转导单位/毫升的载体滴度。通过载体产生测试,生产细胞克隆至少五个月保持稳定。
所述包装细胞应适用于大多数基于SIV的载体的临床前应用。通过避免载体与包装构建体之间的高同源性区域,SIV包装细胞系的设计应降低包装基因转移到靶细胞的风险,同时在可包装的SIV载体构建体方面提供灵活性。