De Graaff M, Man in't Veld M R, Jaspars E M
Virology Section, Gorlaeus Laboratories, Leiden University, The Netherlands.
Virology. 1995 Apr 20;208(2):583-9. doi: 10.1006/viro.1995.1189.
The coat protein of alfalfa mosaic virus has both structural and regulating functions. The latter is evident from the fact that the genomic RNAs of the virus, although they are of messenger polarity, cannot start an infection cycle in the absence of cost protein. The reason could be that the coat protein is needed for viral RNA synthesis. Indeed, the coat protein has been found in tight association with the viral RNA polymerase (R. Quadt et al., 1991, Virology 182, 309-315). To investigate the role of the coat protein, if any, in viral RNA synthesis, we have isolated that viral RNA polymerase (RNA-dependent RNA polymerase, RdRp) from mock-inoculated tobacco plants transformed with cDNAs 1 and 2, known as P12 plants (P. E. M. Taschner et al., 1991, Virology 181, 687-693), which express the nonstructural proteins P1 and P2. Such an enzyme (called M-RdRp) will contain the viral subunits P1 and P2 but not the coat protein. As a comparison we also isolated the RdRp from virion-inoculated P12 plants (C-RdRp). This enzyme will contain the coat protein. We found that both M-RdRp and C-RdRp could synthesize minus RNA, showing that coat protein is not needed for minus-strand synthesis. In contrast, minus-strand synthesis by both enzymes was inhibited by coat protein. Plus-strand synthesis was unaffected by coat protein in the case of C-RdRp, but strongly stimulated by coat protein in the case of M-RdRp. These data might explain why infected cells, which do not produce coat protein, display a very low accumulation of viral plus-strand RNA. They also give a possible explanation for the noninfectious character of the genomes of alfalfa mosaic virus and ilarviruses in the absence of coat protein. The fact that an active enzyme could be isolated from the same membrane fraction in infected and noninfected P12 plants shows that coat protein is not needed for assembly and targeting of the viral RNA polymerase.
苜蓿花叶病毒的外壳蛋白具有结构和调节功能。后者从以下事实中得以体现:病毒的基因组RNA,尽管它们具有信使极性,但在没有外壳蛋白的情况下无法启动感染周期。原因可能是病毒RNA合成需要外壳蛋白。事实上,已经发现外壳蛋白与病毒RNA聚合酶紧密结合(R. Quadt等人,1991年,《病毒学》182卷,309 - 315页)。为了研究外壳蛋白在病毒RNA合成中是否发挥作用,我们从用cDNA 1和2转化的模拟接种烟草植株(称为P12植株,P. E. M. Taschner等人,1991年,《病毒学》181卷,687 - 693页)中分离出了该病毒RNA聚合酶(RNA依赖性RNA聚合酶,RdRp),这些植株表达非结构蛋白P1和P2。这样一种酶(称为M - RdRp)将包含病毒亚基P1和P2,但不包含外壳蛋白。作为对照,我们还从病毒粒子接种的P12植株中分离出了RdRp(C - RdRp)。这种酶将包含外壳蛋白。我们发现M - RdRp和C - RdRp都能合成负链RNA,这表明负链合成不需要外壳蛋白。相反,两种酶的负链合成都受到外壳蛋白的抑制。对于C - RdRp,正链合成不受外壳蛋白影响,但对于M - RdRp,正链合成受到外壳蛋白的强烈刺激。这些数据可能解释了为什么不产生外壳蛋白的受感染细胞中病毒正链RNA的积累非常低。它们也为苜蓿花叶病毒和等轴不稳环斑病毒基因组在没有外壳蛋白时的非感染性特征提供了一种可能的解释。从感染和未感染的P12植株的同一膜组分中能够分离出活性酶这一事实表明,病毒RNA聚合酶的组装和靶向不需要外壳蛋白。