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DEVELOPMENT REGULATION OF MYELIN BASIC PROTEIN GENE

DEVELOPMENT REGULATION OF MYELIN BASIC PROTEIN GENE
髓鞘碱性蛋白基因的发育调控
批准号:
2268077
负责人:
SHOHREH AMINI
金额:
$18.97万
依托单位国家:
美国
项目类别:
财政年份:
1992
资助国家:
美国
项目状态:
已结题
起止时间:
1992-07-01 至 1996-06-30

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中文摘要
翻译
髓鞘碱性蛋白(MBP)占总蛋白的30%以上。 中枢神经系统中的髓鞘和10%的这些蛋白质 在外周神经系统中。MBP仅在Glial中生产 以及中枢和外周神经系统中的雪旺细胞, 分别进行了分析。最近的研究表明,单个基因编码 Mbps系列,并且各种形式的Mbps由 信使核糖核酸选择性剪接机制。Mbps的表达式为 已知在大脑发育过程中受到不同的调控。然而, 控制该基因组织特异性转录的机制 在髓鞘形成过程中仍不清楚。MBP监管区域分析 揭示了位于近端的一个小的11个核苷酸序列 激活序列相对于RNA起始位置-14至-50 位点对MBP的细胞特异性激活有显著贡献 神经胶质细胞。这项提案中概述的研究的中心目标 是确定MBP基因的分子途径 在神经胶质细胞中转录调控。实验设计 包括:(1)协调一致的调控因素(S)的识别 在细胞中通过近端序列控制MBP启动子-和 阶段特异性方式,(2)分子克隆编码该基因 调控蛋白及其结构和功能研究进展 蛋白质,(3)分析该蛋白质在脑内的表达 发展。从这些分析中获得的信息应该增加 我们对转录调控机制的理解 神经细胞中的基因。
英文摘要
Myelin basic protein (MBP) constitutes more than 30% of the proteins of the myelin sheath in the central nervous system and 10% of these proteins in the peripheral nervous system. MBP is produced exclusively in glial and Schwann cells in the central and peripheral nervous systems, respectively. Recent studies have shown that a single gene encodes the family of MBPs and that the various forms of MBPs are governed by a mechanism of alternative splicing of the mRNA. Expression of MBPs is known to be differentially regulated during brain development. However, the mechanisms that govern tissue-specific transcription of this gene during myelination remain unknown. Analysis of the MBP regulatory region revealed that a small 11-nucleotide sequence located in the proximal activating sequence position -14 to -50 with respect to the RNA start site significantly contributes to the cell-specific activation of MBP in glial cells. The central goal of the research outlined in this proposal is to identify the molecular pathway by which MBP gene is transcriptionally regulated in glial cells. The experimental design includes: (1 ) identification of the regulatory-factor(s) that in concert with the proximal sequence control MBP promoter in cell- and stage-specific manner, (2) molecularly cloning the genes encoding this regulatory protein and investigating structure and function of this protein, (3) analyzing expression of this protein during brain development. The information gained from these analyses should increase our understanding of the mechanisms that modulate transcription of the genes in neural cells.
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  • 财政年份:
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