Ellison Kimberly S, Maranchuk Robert A, Mottet Kelly L, Smiley James R
Department of Medical Microbiology and Immunology, University of Alberta, Edmonton, Alberta, Canada.
J Virol. 2005 Apr;79(7):4120-31. doi: 10.1128/JVI.79.7.4120-4131.2005.
Herpes simplex virus (HSV) ICP27 is an essential and multifunctional regulator of gene expression that modulates the synthesis and maturation of viral and cellular mRNAs. Processes that are affected by ICP27 include transcription, pre-mRNA splicing, polyadenylation, and nuclear RNA export. We have examined how ICP27 influences the expression of the essential HSV tegument protein and transactivator of immediate-early gene expression VP16. We monitored the effects of ICP27 on the levels, nuclear export, and polyribosomal association of VP16 mRNA and on the amount and stability of VP16 protein. Deletion of ICP27 reduced the levels of VP16 mRNA without altering its nuclear export or the stability of the encoded protein. However, the translational yield of the VP16 mRNA produced in the absence of ICP27 was reduced 9- to 80-fold relative to that for wild-type infection, suggesting a defect in translation. In the absence of ICP27, the majority of cytoplasmic VP16 mRNA was not associated with actively translating polyribosomes but instead cosedimented with 40S ribosomal subunits, indicating that the translational defect is likely at the level of initiation. These effects were mRNA specific, as polyribosomal analysis of two cellular transcripts (glyceraldehyde-3-phosphate dehydrogenase and beta-actin) and two early HSV transcripts (thymidine kinase and ICP8) indicated that ICP27 is not required for efficient translation of these mRNAs. Thus, we have uncovered a novel mRNA-specific translational regulatory function of ICP27.
单纯疱疹病毒(HSV)的ICP27是一种基因表达所必需的多功能调节因子,可调节病毒和细胞mRNA的合成与成熟。受ICP27影响的过程包括转录、前体mRNA剪接、聚腺苷酸化和核RNA输出。我们研究了ICP27如何影响HSV重要被膜蛋白以及立即早期基因表达反式激活因子VP16的表达。我们监测了ICP27对VP16 mRNA的水平、核输出和多核糖体结合以及对VP16蛋白的量和稳定性的影响。缺失ICP27会降低VP16 mRNA的水平,但不会改变其核输出或编码蛋白的稳定性。然而,相对于野生型感染,在没有ICP27的情况下产生的VP16 mRNA的翻译产量降低了9至80倍,这表明存在翻译缺陷。在没有ICP27的情况下,大多数细胞质VP16 mRNA不与活跃翻译的多核糖体结合,而是与40S核糖体亚基一起沉降,这表明翻译缺陷可能发生在起始水平。这些效应是mRNA特异性的,因为对两种细胞转录本(甘油醛-3-磷酸脱氢酶和β-肌动蛋白)以及两种HSV早期转录本(胸苷激酶和ICP8)的多核糖体分析表明,高效翻译这些mRNA不需要ICP27。因此,我们发现了ICP27一种新的mRNA特异性翻译调节功能。