Dong J, Hunter E
Department of Microbiology, University of Alabama, Birmingham 35294.
Virology. 1993 May;194(1):192-9. doi: 10.1006/viro.1993.1249.
The nature of protein-protein interactions during retroviral assembly is not well understood, and mutational analyses of the potential signals involved in the viral assembly process has been difficult, particularly with the avian retroviruses due to the level of viral proteins expressed in the clonal cell lines containing defective viral genomes. We describe here a complementation system in which the retroviral gag/pol and env gene products were expressed independently from different plasmids under the control of the bacteriophage T7 promoter, in avian cells. Coexpression of the T7 polymerase from a vaccinia virus vector resulted in a high level of biosynthesis of retroviral structural proteins and efficient assembly of virus particles. Electron microscopy and protein composition analyses demonstrated that these virions were indistinguishable from those produced from RSV-infected cells. Through the use of mutant glycoprotein genes it was possible to demonstrate the specificity of the assembly process and the applicability of this system to other retroviral systems is described.
逆转录病毒组装过程中蛋白质-蛋白质相互作用的本质尚未得到充分理解,对病毒组装过程中潜在信号进行突变分析一直很困难,尤其是对于禽逆转录病毒而言,这是因为在含有缺陷病毒基因组的克隆细胞系中病毒蛋白的表达水平所致。我们在此描述了一种互补系统,在该系统中,逆转录病毒gag/pol和env基因产物在禽细胞中由噬菌体T7启动子控制,从不同质粒独立表达。来自痘苗病毒载体的T7聚合酶的共表达导致逆转录病毒结构蛋白的高水平生物合成以及病毒颗粒的有效组装。电子显微镜和蛋白质组成分析表明,这些病毒粒子与从感染劳斯肉瘤病毒(RSV)的细胞产生的病毒粒子没有区别。通过使用突变糖蛋白基因,可以证明组装过程的特异性,并描述了该系统对其他逆转录病毒系统的适用性。