Hong Seong-Karp, Jung Yong-Tae, Park Seung-Won, Paik Soon-Young
Department of Microbiology, College of Medicine, The Catholic University of Korea, 137-701 Seoul, Korea.
Virus Genes. 2005 Oct;31(2):195-201. doi: 10.1007/s11262-005-1795-9.
Recently, recombinant vesicular stomatitis viruses (VSV) have been developed as high-level expression vectors which serve as effective vaccine vectors in animals. An ideal approach for VSV vector production would be the development of stable packaging cell lines that can produce vector particles without transfection step. In this report, we describe generation of an inducible cell line that expresses the VSV polymerase gene (L) under the control of the reverse tetracycline-controlled transactivator (rtTA) system as a first step to make VSV-based packaging cell lines. Integrated polymerase (L) gene was controlled by an rtetR-dependent promoter in the rtTA-producing BHK cell line. When the cell lines were cultured in the presence of tet (tetracycline) or tetracycline derivative doxycycline, the recombinant VSV and wild type VSV were replicated, whereas in the absence of tet or tetracycline derivative doxycycline, the recombinant VSV was not replicated. Viral supernatants were harvested, diluted, and monitored by plaque assay for the presence of infectious VSV. Plaques of VSV containing an additional sequence encoding the EGFP protein allowed rapid detection of infection. Our results suggest wide applications of other surrogate viruses based on VSV. The availability of stable packaging cell lines represents a step toward the use of a VSV vector delivery system that can allow scale-up production of vector-stocks for gene therapy.
最近,重组水泡性口炎病毒(VSV)已被开发为高级表达载体,可作为动物有效的疫苗载体。生产VSV载体的理想方法是开发稳定的包装细胞系,该细胞系无需转染步骤即可产生载体颗粒。在本报告中,我们描述了诱导细胞系的产生,该细胞系在反向四环素控制反式激活因子(rtTA)系统的控制下表达VSV聚合酶基因(L),这是制备基于VSV的包装细胞系的第一步。整合的聚合酶(L)基因由产生rtTA的BHK细胞系中的rtetR依赖性启动子控制。当细胞系在四环素(tetracycline)或四环素衍生物强力霉素(doxycycline)存在下培养时,重组VSV和野生型VSV得以复制,而在不存在四环素或四环素衍生物强力霉素的情况下,重组VSV无法复制。收集病毒上清液,进行稀释,并通过噬斑测定法监测感染性VSV的存在。含有额外编码EGFP蛋白序列的VSV噬斑可实现感染的快速检测。我们的结果表明基于VSV的其他替代病毒具有广泛的应用。稳定包装细胞系的可用性代表了朝着使用VSV载体递送系统迈出的一步,该系统可实现基因治疗载体储备的规模化生产。