Mulvey M, Poppers J, Ladd A, Mohr I
Department of Microbiology and Kaplan Comprehensive Cancer Center, New York University School of Medicine, New York, New York 10016, USA.
J Virol. 1999 Apr;73(4):3375-85. doi: 10.1128/JVI.73.4.3375-3385.1999.
The herpes simplex virus type 1 gamma34.5 gene product and the cellular GADD34 protein both contain similar domains that can regulate the activity of eukaryotic initiation factor 2 (eIF2), a critical translation initiation factor. Viral mutants that lack the GADD34-related function grow poorly on a variety of malignant human cells, as activation of the cellular PKR kinase leads to the accumulation of inactive, phosphorylated eIF2 at late times postinfection. Termination of translation prior to the completion of the viral reproductive cycle leads to impaired growth. Extragenic suppressors that regain the ability to synthesize proteins efficiently in the absence of the viral GADD34-related function have been isolated. These suppressor alleles are dominant in trans and affect the steady-state accumulation of several viral mRNA species. We demonstrate that deregulated expression of Us11, a virus-encoded RNA-binding, ribosome-associated protein is necessary and sufficient to confer a growth advantage upon viral mutants that lack a GADD34-related function. Ectopic expression of Us11 reduces the accumulation of the activated cellular PKR kinase and allows for sustained protein synthesis. Thus, an RNA-binding, ribosome-associated protein (Us11) and a GADD34-related protein (gamma34.5) both function in a signal pathway that regulates translation by modulating eIF2 phosphorylation.
单纯疱疹病毒1型γ34.5基因产物和细胞GADD34蛋白都含有相似的结构域,它们可以调节真核起始因子2(eIF2)的活性,eIF2是一种关键的翻译起始因子。缺乏GADD34相关功能的病毒突变体在多种恶性人类细胞上生长不良,因为细胞PKR激酶的激活会导致感染后期无活性的磷酸化eIF2积累。在病毒繁殖周期完成之前终止翻译会导致生长受损。已经分离出在缺乏病毒GADD34相关功能的情况下能重新有效合成蛋白质能力的基因外抑制子。这些抑制子等位基因在反式中起主导作用,并影响几种病毒mRNA种类的稳态积累。我们证明,病毒编码的RNA结合、核糖体相关蛋白Us11的失调表达对于赋予缺乏GADD34相关功能 的病毒突变体生长优势是必要且充分的。Us11的异位表达减少了活化的细胞PKR激酶的积累,并允许持续的蛋白质合成。因此,一种RNA结合、核糖体相关蛋白(Us11)和一种GADD34相关蛋白(γ34.5)都在通过调节eIF2磷酸化来调节翻译的信号通路中发挥作用。