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Translational Control by elF2 Kinase during ER Stress

Translational Control by elF2 Kinase during ER Stress
ER 应激期间 eF2 激酶的翻译控制
批准号:
6918835
负责人:
RONALD C WEK
金额:
$28.03万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-08-01 至 2009-07-31

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中文摘要
翻译
描述(由申请人提供):细胞应激,如内质网错误折叠蛋白的积累(内质网应激),营养剥夺,紫外线照射和氧化损伤,诱导旨在减轻细胞损伤的基因表达程序。胁迫基因表达的一个重要贡献者是一个磷酸化真核起始因子-2 (eIF2)的蛋白激酶家族。eIF2的磷酸化降低了该翻译因子的活性,导致一般蛋白质合成的调节和诱导对应激修复重要的mrna的翻译。本研究的重点是eIF2激酶PEK (PERK, EIF2AK3),它在内质网应激反应中被激活。PEK磷酸化eIF2通过激活多种转录因子(包括ATF4和NF-KB)来增强细胞活力,从而响应内质网应激,这些转录因子直接表达参与应激修复或凋亡的基因。异常的内质网应激反应与一系列人类疾病有关,包括糖尿病、骨骼和肝脏疾病、循环系统和神经系统疾病。本文旨在探讨内质网应激对应激相关基因表达的调控机制及其在疾病中的作用。我们提出了四个具体目标。目的1:表征PEK在内质网应激下基因特异性翻译的控制。我们将确定翻译重新启动或其他翻译机制是否对PEK反应途径中调节蛋白的合成很重要。目的2表征eIF2磷酸化在NF-KB活性调控中的作用。我们将描述PEK在内质网应激期间激活NF-KB的分子机制,并将其与其他NF-KB调控过程进行比较。目的3确定eIF2磷酸化在抗抗癌药物细胞保护中的作用。在这个目的中,我们将探索eIF2激酶和p53应激途径之间的联系,并确定eIF2磷酸化是否有助于抗癌药物的耐药。目标4。确定PEK突变在人群中鉴定的功能后果。我们将利用哺乳动物培养的细胞来表征来自WRS患者或多态性的PEK错义变化的功能后果。总之,解决这些目标将增加我们对细胞适应环境压力的过程及其对人类疾病的影响的理解。
英文摘要
DESCRIPTION (provided by applicant): Cellular stresses such as accumulation of misfolded protein in the endoplasmic reticulum (ER stress), nutrient deprivation, UV irradiation, and oxidative damage induce a program of gene expression designed to alleviate cellular injury. An important contributor to stress gene expression is a family of protein kinases that phosphorylate eukaryotic initiation factor -2 (eIF2). Phosphorylation of eIF2 reduces the activity of this translation factor, leading to regulation of general protein synthesis and induced translation of mRNAs important for stress remediation. This proposal focuses on the eIF2 kinase, PEK (PERK, EIF2AK3), that is activated in response ER stress. PEK phosphorylation of eIF2 enhances cell viability in response to ER stress via activation of multiple transcription factors, including ATF4 and NF-KB, that direct expression of genes involved in stress remediation or apoptosis. An aberrant ER stress response is associated with a range of human diseases, including diabetes, bone and liver disorders, and circulatory and neurological pathologies. This proposal addresses the mechanisms regulating the program of stress-related gene expression in response to ER stress, and its role in disease. We propose four specific aims. Aim 1 Characterize PEK control of gene-specific translation in response to ER stress. We will determine whether translation reinitiation or alternative translation mechanisms are important for synthesis of regulatory proteins in the PEK response pathway. Aim 2 Characterize the role of eIF2 phosphorylation in the regulation of NF-KB activity. We will characterize the molecular mechanisms by which PEK activates NF-KB during ER stress and compare it to alternative NF-KB regulatory processes. Aim 3 Determine the role of eIF2 phosphorylation in cytoprotection against anti-cancer drugs. In this aim, we will explore the link between the eIF2 kinase and p53 stress pathways, and determine whether eIF2 phosphorylation contributes to resistance to anti-cancer drugs. Aim 4. Determine the functional consequences of PEK mutations identified in the human population. We will characterize the functional consequence of PEK missense changes derived from WRS patients or polymorphisms using mammalian cultured cells. Together, addressing these aims will increase our understanding of the process of cellular adaptation to environmental stresses and its impact in human disease.
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Regulation and Function of Integrated Stress Response
Regulation and Function of Integrated Stress Response
Translational Control by elF2 Kinase during ER Stress
Translational Control by elF2 Kinase during ER Stress
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