Enhancement of Cellular DNA Flexibility
Enhancement of Cellular DNA Flexibility
批准号:
7139782
负责人:
LOUIS JAMES MAHER
金额:
$33.61万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-25 至 2010-08-31
关键词:
atomic force microscopycationschemical stabilitychromatinconformationfluorescence resonance energy transferfunctional /structural genomicsgene induction /repressiongenetic promoter elementintermolecular interactionmicroorganism culturenanotechnologynonhistone nucleoproteinnuclear magnetic resonance spectroscopynucleic acid structureprotein structurereporter genesyeasts
中文摘要
描述(由申请人提供):DNA是一种局部不灵活的聚合物。尽管如此,DNA固有的不灵活性在细胞中以某种方式被克服,允许DNA的不断折叠和循环用于存储和基因表达。了解健康细胞和患病细胞中DNA的灵活性是如何增强的,这是非常重要的。HMGB蛋白是真核染色质中丰富的非组蛋白。HMGB蛋白被认为是增强DNA弯曲和扭曲的结构因子。我们试图更好地了解HMGB蛋白的分子机制,以及HMGB蛋白在活细胞中基因表达中的功能作用。提出了四个具体目标。1. 用单分子实验表征HMGB机理。我们将测试HMGB蛋白是否会导致DNA中的瞬时柔性铰链。2. 用阳离子蛋白结构域分析DNA崩溃。我们将测试HMGB蛋白是否可以利用阳离子结构域导致DNA崩溃。3. 细菌中易化DNA环的分析。我们将测试HMGB蛋白是否可以稳定细菌抑制环并替代细菌结构DNA结合蛋白。4. HMGB蛋白对酵母转录激活子位置效应的影响分析。我们将测试HMGB蛋白是否能稳定酵母中的DNA调控环。Lav描述:构建生物的指令被编码在细胞食谱(DNA)中的食谱(基因)中。很长的DNA分子很难剧烈弯曲和扭曲,但为了在细胞中发挥作用,必须折叠成许多形状。通过了解使DNA具有弹性的细胞蛋白,我们将了解可能用于人为调节疾病基因的工具。
英文摘要
DESCRIPTION (provided by applicant): DNA is a locally inflexible polymer. Nonetheless, the intrinsic inflexibility of DNA is somehow overcome in cells, allowing the constant folding and looping of DNA for storage and gene expression. It is fundamentally important to understand how DNA flexibility is enhanced in healthy, and diseased cells. HMGB proteins are abundant non-histone proteins in eukaryotic chromatin. HMGB proteins are thought to function as architectural factors that enhance DNA bending and twisting. We seek to better understand, both the molecular mechanism of HMGB proteins, and the functional role of HMGB proteins in gene expression in living cells. Four specific aims are proposed. 1. Characterization of HMGB mechanism by single molecule experiments. We will test if HMGB proteins cause transient flexible hinges in DNA. 2. Analysis of DNA collapse by cationic protein domains. We will test if HMGB proteins can use cationic domains to cause DNA collapse. 3. Analysis of facilitated DNA looping in bacteria. We will test if HMGB proteins can stabilize bacterial repression loops and substitute for bacterial architectural DNA binding proteins. 4. Analysis of the effect of HMGB proteins on transcription activator position effects in yeast. We will test if HMGB proteins stabilize DNA regulatory loops in yeast. Lav description: The instructions for building living things are coded in recipes (genes) within the cell cookbook (DNA). Very long DNA molecules are difficult to sharply bend and twist, but must nonetheless be folded into many shapes in order to function in cells. By understanding the cell proteins that make DNA flexible, we will learn about tools that may be used to artificially regulate disease genes.
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