课题基金 / 基金详情

Rest-Activated Program of Gene Expression in Ischemia

Rest-Activated Program of Gene Expression in Ischemia
缺血中基因表达的休息激活程序
批准号:
6845659
负责人:
R. Suzanne Zukin
金额:
$38.62万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-03-01 至 2009-02-28

项目摘要

项目成果

R. Suzanne Zukin的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):REST/NRSF是一种基因沉默转录因子,在胚胎发生过程中广泛表达,在末梢神经元分化中起战略性作用。在神经祖细胞和非神经细胞中,REST积极抑制大量对突触可塑性和突触重塑重要的神经特异性基因,包括编码突触囊泡蛋白、结构蛋白、电压敏感离子通道和AMPAR亚基GluR2的基因。随着神经元分化,REST下调对神经表型的诱导和维持至关重要。胚胎发生过程中对REST表达的干扰会导致细胞凋亡、异常分化和模式以及致死性。REST及其靶基因的失调与唐氏综合征、阿尔茨海默病和一些髓母细胞瘤的发病机制有关。全局缺血是一种神经系统疾病,其中短暂的神经元损伤诱导海马CA1神经元选择性延迟死亡。损伤和细胞死亡之间的实质性延迟与转录变化的作用是一致的。该实验室最近的研究结果表明,缺血性损伤激活了注定死亡的神经元中的REST,并涉及REST在全局缺血诱导的神经元死亡中。本研究旨在研究rest启动程序在缺血中转录变化的作用。AMPAR亚基GluR2、脑源性神经营养因子(BDNF)和u阿片受体是已知的REST靶点,并与完全性缺血相关的兴奋性毒性死亡有关。一个焦点将是rest依赖的GluR2和p受体基因表达沉默和BDNF表达上调。潜在的假设是,全局性缺血触发基因沉默转录因子REST的去抑制,从而启动基因转录变化程序,一个或多个REST靶基因在全局性缺血诱导的神经元死亡中起关键作用。具体目的是:1)检测缺血后CA1神经元中REST抑制复合物的激活,确定REST是否与神经元死亡有因果关系。2)研究REST改变缺血后神经元靶基因的机制,确定REST依赖性染色质重塑是否与神经元死亡有因果关系;3)发现新的REST靶基因,确定它们是否与神经元死亡有因果关系。我们的研究结果与损伤神经元中转录失调的观察结果一致,并表明REST沉默的中断在全局缺血的发病机制中起关键作用。这项拟议的研究将影响全球缺血干预新治疗策略的发展,全球缺血是一种每年影响20万美国人的使人丧失能力的创伤。这项研究对其他疾病的研究也有启示,包括癫痫、中风、创伤性脑损伤、脊髓损伤和阿尔茨海默病。
英文摘要
DESCRIPTION (provided by applicant): REST/NRSF is a gene silencing transcription factor that is widely expressed during embryogenesis and plays a strategic role in terminal neuronal differentiation. In neural progenitors and non-neural cells, REST actively represses a large array of neural-specific genes important to synaptic plasticity and synaptic remodeling including those encoding synaptic vesicle proteins, structural proteins, voltage-sensitive ion channels, and the AMPAR subunit GluR2. As neurons differentiate, REST downregulation is essential for induction and maintenance of the neural phenotype. Perturbation of REST expression during embryogenesis results in cellular apoptosis, aberrant differentiation and patterning, and lethality. Dysregulation of REST and its target genes is implicated in the pathogenesis of Down's syndrome, Alzheimer's disease and some medulloblastomas. Global ischemia is a neurological disorder in which a brief neuronal insult induces selective, delayed death of hippocampal CA1 neurons. The substantial delay between insult and cell death is consistent with a role for transcriptional changes. Recent findings from this laboratory show that ischemic insults activate REST in neurons destined to die and implicate REST in global ischemia-induced neuronal death. The proposed research aims to study the role of the REST-initiated program of transcriptional changes in ischemia. The AMPAR subunit GluR2, brain-derived neurotrophic factor (BDNF) and the u opioid receptor are known targets of REST and are implicated in the excitotoxic death associated with global ischemia. A focus will be REST-dependent silencing of GluR2 and p receptor gene expression and upregulation of BDNF expression. The underlying hypothesis is that global ischemia triggers de-repression of the gene silencing transcription factor REST, which initiates a program of gene transcriptional changes and that one or more REST target genes are critical players in global ischemia-induced neuronal death. Specific Aims are 1) Examine activation of the REST repressor complex in post-ischemic CA1 neurons and determine whether REST is causally related to neuronal death. 2) Examine mechanisms by which REST alters target genes in post-ischemic neurons and determine whether REST-dependent chromatin remodeling is causally related to neuronal death; and 3) Identify novel REST target genes and determine whether they are causally related to neuronal death. Our findings are consistent with observations of transcriptional dysregulation in injured neurons and suggest that disruption of REST silencing has a critical role in the pathogenesis of global ischemia. The proposed research will impact on the development of new treatment strategies for intervention in global ischemia, a dehabilitating trauma that affects 200,000 Americans each year. This study has implications for research on other disorders including epilepsy, stroke, traumatic brain injury, spinal cord injury and Alzheimer's disease.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
REST-Activated Program of Gene Expression in Ischemia
Dysregulation of mTORC2 and cofilin signaling in Fragile X Syndrome
Dysregulation of mTOR Signaling in Fragile X Syndrome
Dysregulation of mTORC2 and cofilin signaling in Fragile X Syndrome
海外基金