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Chromatin Domain Structure and Function

Chromatin Domain Structure and Function
染色质结构域结构和功能
批准号:
6848052
负责人:
Andrew Steven Belmont
金额:
$30.37万
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:
1999-02-01 至 2007-01-31

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中文摘要
翻译
描述(由申请人提供):目前的基因调控模型表明,间期染色体被分成大的、功能不同的染色质结构域,促进了邻近基因的独立调控。建立这些结构域的结构和分子机制仍然知之甚少。只有间接结构分析可用于分析这些结构域的结构,关键的限制是直接可视化结构域大规模染色质折叠的技术困难。我们的长期目标是解剖特定基因位点的大规模染色质折叠,分析这些折叠基序的顺式和反式决定因素,并确定这一水平的染色质组织在转录调控方面的功能意义。
英文摘要
DESCRIPTION (provided by applicant): Current models of gene regulation suggest that interphase chromosomes are divided into large, functionally distinct chromatin domains, facilitating independent regulation of neighboring genes. The structural and molecular mechanisms establishing these domains remain poorly understood. Only indirect structural assays have been available to analyze the structure of these domains, with a key limitation being the technical difficulty associated with directly visualizing domain large-scale chromatin folding. Our long term objectives are to dissect the large-scale chromatin folding of specific gene loci, to analyze the cis and trans determinants of these folding motifs, and to determine the functional significance of this level of chromatin organization with regard to transcriptional regulation. The specific aims for this project period will be to address the following questions:1. What changes in large-scale chromatin structure accompany transcriptional activation/repression?2. Does large-scale chromatin condensation constrain transcriptional activation?3. By what mechanisms do transcriptional activators modify large-scale chromatin structure?4. What cis factors control large-scale chromatin structure? Using novel visualization methods, in vivo dynamics of specific gene and chromosome loci will be observed directly during transcriptional activation or silencing. A combination of light and electron microscopy will visualize changes in large-scale chromatin organization and nuclear positioning of these chromosome regions during transcriptional activation or repression and monitor the sequential recruitment of various transcription cofactors to these sites. Several approaches will be used to begin mechanisticdissection of the underlying biochemical mechanisms underlying observed reorganization of large-scale chromatin structure, and the functional importance of large-scale chromatin organization with respect to potential for transcriptional activation will be assessed. Insight from these studies should be of help in guiding the design of future constructs and artificial chromosomes used in gene therapy.
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