Kwong A D, Kruper J A, Frenkel N
Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637.
J Virol. 1988 Mar;62(3):912-21. doi: 10.1128/JVI.62.3.912-921.1988.
Herpes simplex virus (HSV) virions contain one or more functions which mediate the shutoff of host protein synthesis and the degradation of host mRNA. HSV type 1 (HSV-1) mutants deficient in the virion shutoff of host protein synthesis (vhs mutants) were isolated and were found to be defective in their ability to degrade host mRNA. Furthermore, it was found that viral mRNAs in cells infected with the vhs 1 mutant have a significantly longer functional half-life than viral mRNAs in wild-type virus-infected cells. In the present study we have mapped the vhs1 mutation affecting the virion shutoff of host protein synthesis to a 265-base-pair NruI-XmaIII fragment spanning map coordinates 0.604 to 0.606 of the HSV-1 genome. The mutation(s) affecting the functional half-lives of host mRNA as well as the alpha (immediate-early), beta (early), and gamma (late) viral mRNAs were also mapped within this 265-base-pair fragment. Thus, the shutoff of host protein synthesis is most likely mediated by the same function which decreases the half-life of viral mRNA. The shorter half-life of infected-cell mRNAs may allow a more rapid modulation of viral gene expression in response to changes in the transcription of viral genes. Interestingly, the vhs1 mutation of HSV-1 maps within a region which overlaps the Bg/II-N sequences of HSV-2 DNA shown previously to transform cells in culture. The possible relationship between the transformation and host shutoff functions are discussed.
单纯疱疹病毒(HSV)病毒粒子含有一种或多种介导宿主蛋白质合成关闭和宿主mRNA降解的功能。分离出了在病毒粒子介导的宿主蛋白质合成关闭方面存在缺陷的1型单纯疱疹病毒(HSV-1)突变体(vhs突变体),并发现它们在降解宿主mRNA的能力方面存在缺陷。此外,还发现感染vhs 1突变体的细胞中的病毒mRNA的功能性半衰期明显长于野生型病毒感染细胞中的病毒mRNA。在本研究中,我们已将影响病毒粒子介导的宿主蛋白质合成关闭的vhs1突变定位到一个265个碱基对的NruI-XmaIII片段上,该片段跨越HSV-1基因组图谱坐标0.604至0.606。影响宿主mRNA以及α(立即早期)、β(早期)和γ(晚期)病毒mRNA功能性半衰期的突变也定位在这个265个碱基对的片段内。因此,宿主蛋白质合成的关闭很可能是由降低病毒mRNA半衰期的同一功能介导的。感染细胞mRNA较短的半衰期可能允许更快速地调节病毒基因表达,以响应病毒基因转录的变化。有趣的是,HSV-1的vhs1突变定位在一个与先前显示可在培养中转化细胞的HSV-2 DNA的Bg/II-N序列重叠的区域内。讨论了转化与宿主关闭功能之间的可能关系。