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Control of Translation in Herpesvirus infected Cells

Control of Translation in Herpesvirus infected Cells
疱疹病毒感染细胞中翻译的控制
批准号:
6777777
负责人:
Ian J Mohr
金额:
$32.11万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-05-01 至 2008-04-30

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中文摘要
翻译
描述(由申请人提供):真核细胞对多种形式的应激反应的能力,从热不耐受或营养剥夺到病毒感染,部分涉及它们调节elF2活性的能力,elF2是一种关键的翻译起始因子。当它的α亚基被四种已知的elF2 α激酶中的一种磷酸化时,elF2被灭活,翻译被抑制。该项目的总体长期目标是了解elf2 α磷酸化是如何在病毒感染产生的应激反应中被调节的。在感染细胞中,许多细胞功能的占用和重定向加上病毒基因产物的快速积累诱导细胞应激并激活宿主防御。病毒感染细胞中产生的大量双链RNA激活细胞elf2 α激酶PKR,而病毒糖蛋白的合成增加了内质网的负荷,超过了其正确折叠和加工内质网客户蛋白的能力。后一种情况触发未折叠蛋白反应(UPR),随后elf2 α磷酸化阻止翻译。
英文摘要
DESCRIPTION (provided by applicant): The capacity of eukaryotic cells to respond to numerous forms of stress, ranging from thermal intolerance or nutrient deprivation to viral infection, involves, in part, their ability to regulate the activity of elF2, a critical translation initiation factor. Upon phosphorylation on it's alpha subunit by one of four known elF2alpha kinases, elF2 is inactivated and translation is inhibited. The overall long - term objective of this project is to understand how elF2alpha phosphorylation is regulated in response to stress generated by viral infection. In infected cells, the appropriation and redirection of many cellular functions coupled with the rapid accumulation of viral gene products induces cellular stress and activates host defenses. Copious quantities of double stranded (ds)RNA produced in virus infected cells activates the cellular elF2alpha kinase PKR, while the synthesis of viral glycoproteins increases the load on the endoplasmic reticulum, exceeding its capacity to correctly fold and process ER client proteins. This latter condition triggers the unfolded protein response (UPR) and the ensuing phosphorylation of elF2alpha arrests translation. In this proposal, we investigate viral strategies that prevent host defenses from inactivating the translation factor elF2. Our studies focus on herpes simplex virus-1, a neurotrophic herpesvirus whose productive replication is responsible for a spectrum of diseases, ranging from epithelial sores, severe ocular disease and life threatening encephalitis in immunocompetent hosts to disseminated disease in neonates and immunocompromised individuals. Both the gamma(1)34.5 and Us11 gene products are known to regulate elF2alpha phosphorylation. While the gamma(1)34.5 gene product recruits a cellular phosphatase to dephosphorylate elF2alpha, Us11 prevents activation of the cellular elF2alpha kinase PKR via an unknown mechanism. Furthermore, HSV-1 expresses a previously uncharacterized function, distinct from the polypeptide products of the Us11and gamma(1)34.5 genes, that confers resistance to ER stress. We will (i) evaluate the effects of HSV-1 infection on ER stress transducers; (ii) identify the gene product (s) responsible for preventing elF2alpha phosphorylation in response to effectors that stimulate the UPR; and (iii) investigate the molecular mechanisms by which Us11 prevents PKR activation.
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Control of antiviral immunity by RNA decay
Infectious Disease and Basic Microbiological Mechanisms
Control of Translation in Herpesvirus Infected Cells
Virus Host Interactions that Regulate Translation in Cells Infected with HSV-1
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