Godowski P J, Knipe D M
J Virol. 1983 Sep;47(3):478-86. doi: 10.1128/JVI.47.3.478-486.1983.
We have examined the effect of temperature-sensitive mutations in the herpes simplex virus 1 DNA-binding protein gene on viral gene expression. We have found that at the nonpermissive temperature, the synthesis of certain immediate early, early, and late viral polypeptides was greater in cells infected with the temperature-sensitive mutants than in cells infected with the wild-type virus. This effect was independent of the requirement for this viral protein for viral DNA replication. The altered rate of synthesis of viral proteins was due to a thermolabile gene product. Cells infected with these mutants at the permissive temperature and then shifted to the nonpermissive temperature exhibited enhanced levels of viral gene expression. The addition of actinomycin D at the time of the temperature shift prevented the alteration in viral protein synthesis. Therefore, continuing transcription is required for this change in gene expression. Northern blot analysis of cytoplasmic RNA showed that the steady-state level of specific viral transcripts expressed from parental virus genomes was greater in cells infected by these mutants at the nonpermissive temperature. These results indicate that the major DNA-binding protein of herpes simplex virus type 1 acts as a negative regulator of viral gene expression by affecting the abundance of cytoplasmic viral mRNAs.
我们研究了单纯疱疹病毒1型DNA结合蛋白基因中的温度敏感突变对病毒基因表达的影响。我们发现,在非允许温度下,感染温度敏感突变体的细胞中某些立即早期、早期和晚期病毒多肽的合成比感染野生型病毒的细胞中更多。这种效应与该病毒蛋白对病毒DNA复制的需求无关。病毒蛋白合成速率的改变是由于一种热不稳定的基因产物。在允许温度下感染这些突变体然后转移到非允许温度的细胞表现出病毒基因表达水平增强。在温度转移时添加放线菌素D可防止病毒蛋白合成的改变。因此,这种基因表达变化需要持续转录。对细胞质RNA的Northern印迹分析表明,在非允许温度下被这些突变体感染的细胞中,从亲本病毒基因组表达的特定病毒转录本的稳态水平更高。这些结果表明,单纯疱疹病毒1型的主要DNA结合蛋白通过影响细胞质病毒mRNA的丰度而作为病毒基因表达的负调节因子。