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UV-B MEDIATED CHANGES IN CHROMAIN REMODELING

UV-B MEDIATED CHANGES IN CHROMAIN REMODELING
UV-B 介导的色素重塑变化
批准号:
7269320
负责人:
VIRGINIA E WALBOT
金额:
$3.03万
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:
2006-08-01 至 2009-07-31

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中文摘要
翻译
描述(由申请人提供):在本FIRCA中,我们提出了在UV-B照射后对Mu转座子和细胞基因的染色质组织进行深入分析。重点是确定UV-B是否改变染色质重塑蛋白和其他DNA相关蛋白的丰度或翻译后修饰。接下来,我们将研究结合在Mu元件上的染色质蛋白和几个被UV-B处理上调或下调的宿主基因。在这项研究中,我们将询问是否有特定基因的变化,以及在治疗期间转录增加(或减少)的基因是否发生类似的变化。对该项目来说,最重要的是检查沉默的Mu元素发生的变化,这可能解释UV-B如何重新激活这些转座子。在每个实验中采用了定义明确的UV-B处理和具有充分记录的UV-B反应的适当基因型,从而可以对每个假设进行稳健的检验。所使用的方法将包括蛋白质组学,以确定核蛋白丰度和翻译后的修改后,UV-B曝光,ChIP定义染色质因子差异相关的活性和沉默的Mu元素前后UV-B曝光,和选择性微阵列杂交和RT-PCR检测,以监测转录变化的RNAi敲除股票是非常敏感的UV-B。这些研究旨在解决一个基本问题,即可变的环境因素如何干扰细胞基因表达,不仅在辐射部位,而且在远处组织。鉴于动物和植物的细胞反应之间存在广泛的相似之处,这些数据应该有助于理解人类细胞对环境UV-B暴露的挑战的反应。由于南半球的臭氧层变薄直接影响到阿根廷,人们更加有兴趣了解紫外线B对人类、玉米等主要作物和整个生态系统的损害。即使是低水平的UV-B照射也会伤害生物体:它是一种强大的致癌物质,与人类皮肤癌有关。陆地植物特别敏感,因为光合组织不可避免地暴露于UV-B。因此,对植物损伤的研究可以帮助确定维持其他真核生物细胞功能所需的修复途径。
英文摘要
DESCRIPTION (provided by applicant): In this FIRCA we propose an in-depth analysis of chromatin organization at Mu transposons and cellular genes after UV-B irradiation. The focus is on establishing whether UV-B alters the abundance or post- translational modification of chromatin remodeling proteins and other DNA-associated proteins. Next we will examine the chromatin proteins bound at Mu elements and several host genes that are up- or down- regulated by UV-B treatments. In this study we will ask whether there are changes at particular genes and whether similar changes occur at genes whose transcript increase (or decrease) during treatment. Of paramount importance to the project is examining changes that occur at silenced Mu elements that might explain how UV-B can reactivate these transposons. Well-defined UV-B treatments and appropriate genotypes with well-documented UV-B responses are employed in each experiment permitting a robust test of each hypothesis. The methods used will include proteomics to define nuclear protein abundances and post-translational modifications following UV-B exposure, ChIP to define chromatin factors differentially associated with active and silent Mu elements before and after UV-B exposure, and selective microarray hybridization and RT-PCR assays to monitor transcript changes in RNAi knockdown stocks that are extremely UV-B sensitive. The studies are designed to address the fundamental question of how a variable environmental factor perturbs cellular gene expression, not only at the site of radiation but in distant tissues. Given the extensive parallels between cellular responses in animals and plants, these data should prove useful in understanding the responses of human cells to the challenge of environmental UV-B exposure. As ozone thinning in the Southern hemisphere impacts Argentina directly, there is heightened interest in understanding UV-B damage to people, major crops such as corn, and the entire ecosystem. Even low UV-B exposure harms organisms: it is a powerful carcinogen, implicated in skin cancer in humans. Land plants are particularly sensitive, because photosynthetic tissues are inevitably exposed to UV-B. Thus studies of plant damage can help define repair pathways required to maintain cellular functions in other eukaryotes.
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