Ensinger M J
J Virol. 1987 Jun;61(6):1842-50. doi: 10.1128/JVI.61.6.1842-1850.1987.
The phenotypic defects of three temperature-sensitive (ts) mutants of vaccinia virus, the ts mutations of which were mapped to the gene for one of the high-molecular-weight subunits of the virion-associated DNA-dependent RNA polymerase, were characterized. Because the virion RNA polymerase is required for the initiation of the viral replication cycle, it has been predicted that this type of mutant is defective in viral DNA replication and the synthesis of early viral proteins at the nonpermissive temperature. However, all three mutants synthesized both DNA and early proteins, and two of the three synthesized late proteins as well. RNA synthesis in vitro by permeabilized mutant virions was not more ts than that by the wild type. Furthermore, only one of three RNA polymerase activities that was partially purified from virions assembled at the permissive temperature displayed altered biochemical properties in vitro that could be correlated with its ts mutation: the ts13 activity had reduced specific activity, increased temperature sensitivity, and increased thermolability under a variety of preincubation conditions. Although the partially purified polymerase activity of a second mutant, ts72, was also more thermolabile than the wild-type activity, the thermolability was shown to be the result of a second mutation within the RNA polymerase gene. These results suggest that the defects in these mutants affect the assembly of newly synthesized polymerase subunits into active enzyme or the incorporation of RNA polymerase into maturing virions; once synthesized at the permissive temperature, the mutant polymerases are able to function in the initiation of subsequent rounds of infection at the nonpermissive temperature.
对痘苗病毒的三个温度敏感(ts)突变体的表型缺陷进行了表征,这些ts突变被定位到病毒粒子相关的依赖DNA的RNA聚合酶的一种高分子量亚基的基因上。由于病毒粒子RNA聚合酶是病毒复制周期起始所必需的,因此据预测,这种类型的突变体在非允许温度下病毒DNA复制和早期病毒蛋白合成方面存在缺陷。然而,所有三个突变体都能合成DNA和早期蛋白,并且三个中有两个还能合成晚期蛋白。经通透处理的突变体病毒粒子在体外的RNA合成并不比野生型更具温度敏感性。此外,从在允许温度下组装的病毒粒子中部分纯化的三种RNA聚合酶活性中,只有一种在体外显示出改变的生化特性,这与其ts突变相关:在各种预孵育条件下,ts13活性的比活性降低、温度敏感性增加且热稳定性增加。尽管第二个突变体ts72的部分纯化聚合酶活性也比野生型活性更不耐热,但这种不耐热被证明是RNA聚合酶基因内第二个突变的结果。这些结果表明,这些突变体中的缺陷影响新合成的聚合酶亚基组装成活性酶或RNA聚合酶掺入成熟病毒粒子;一旦在允许温度下合成,突变聚合酶能够在非允许温度下启动后续轮次的感染中发挥作用。