Farson D, Witt R, McGuinness R, Dull T, Kelly M, Song J, Radeke R, Bukovsky A, Consiglio A, Naldini L
Cell Genesys, Foster City, CA 94404, USA.
Hum Gene Ther. 2001 May 20;12(8):981-97. doi: 10.1089/104303401750195935.
We have successfully generated and characterized a stable packaging cell line for HIV-1-based vectors. To allow safe production of vector, a minimal packaging construct carrying only the coding sequences of the HIV-1 gag-pol, tat, and rev genes was stably introduced into 293G cells under the control of a Tet(o) minimal promoter. 293G cells express the chimeric Tet(R)/VP16 trans-activator and contain a tetracycline-regulated vesicular stomatitis virus protein G (VSV-G) envelope gene. When the cells were grown in the presence of tetracycline the expression of both HIV-1-derived and VSV-derived packaging functions was suppressed. On induction, approximately 50 ng/ml/24 hr of Gag p24 equivalent of vector was obtained. After introduction of the transfer vector by serial infection, vector could be collected for several days with a transduction efficiency similar or superior to that of vector produced by transient transfection both for dividing and growth-arrested cells. The vector could be effectively concentrated to titers reaching 10(9) transducing units/ml and allowed for efficient delivery and stable expression of a GFP transgene in the mouse brain. The packaging cell line and all vector producer clones described here were shown to be free from replication-competent recombinants, and from recombinants between packaging and vector constructs that transfer the viral gag-pol genes. The packaging cell line and the assays developed will advance lentiviral vectors toward the stringent requirements of clinical applications.
我们已成功构建并鉴定了一种用于基于HIV-1的载体的稳定包装细胞系。为了安全生产载体,仅携带HIV-1 gag-pol、tat和rev基因编码序列的最小包装构建体在Tet(o)最小启动子的控制下稳定导入293G细胞。293G细胞表达嵌合的Tet(R)/VP16反式激活因子,并含有四环素调控的水泡性口炎病毒蛋白G(VSV-G)包膜基因。当细胞在四环素存在下生长时,HIV-1来源和VSV来源的包装功能的表达均被抑制。诱导后,获得了相当于约50 ng/ml/24小时的Gag p24的载体。通过连续感染引入转移载体后,对于分裂细胞和生长停滞细胞,均可在数天内收集载体,其转导效率与瞬时转染产生的载体相似或更高。该载体可有效浓缩至滴度达到10(9)转导单位/ml,并能在小鼠脑中高效递送和稳定表达GFP转基因。本文所述的包装细胞系和所有载体生产克隆均未检测到具有复制能力的重组体,以及转移病毒gag-pol基因的包装构建体与载体构建体之间的重组体。所构建的包装细胞系和开发的检测方法将推动慢病毒载体满足临床应用的严格要求。