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High-resolution analyses of chromatin responses to DNA damage

High-resolution analyses of chromatin responses to DNA damage
高分辨率分析染色质对 DNA 损伤的反应
批准号:
1615701
负责人:
Kyoko Yokomori
金额:
$66.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-08-01 至 2020-07-31

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中文摘要
翻译
DNA中的遗传信息以染色质的形式包装,通过多种DNA修复途径保护其免受损伤,了解DNA修复的关键任务是如何执行的是本研究的长期目标。该项目将以前所未有的空间和时间分辨率检查单个活细胞中染色质对DNA损伤的实时变化,从而确定DNA修复过程中染色质重组的重要性。除了推进DNA损伤反应和修复机制的知识外,该项目还将开发和应用一些创新技术,这些技术可能会引起其他研究人员的极大兴趣。PI和联合PI致力于在研究界广泛传播这些技术。该项目的多学科性质将为研究生和博士后以及本科生和高中生提供独特而宝贵的培训机会。他们将学习与研究哺乳动物细胞DNA修复机制相关的基础和尖端技术,包括高分辨率成像。染色质对DNA损伤的反应是高度动态的,必须调节以维持适当的结构组织,促进高保真DNA修复并保持基因组完整性。这些染色质结构动力学如何与DNA修复协调尚不清楚。pi将开发多路复用新型荧光相关方法,包括对相关光谱(pCF)和纳米成像跟踪技术,以分析DNA损伤如何影响染色质动力学以及这反过来如何决定DNA修复途径的选择。这些现象将研究相对简单的DNA断裂或复杂的DNA损伤病变诱导在不同的细胞环境。目的1包括监测损伤部位染色质通路的变化,询问与DNA修复途径选择的关系,并确定相关因素。目的2涉及在定义的DNA双链断裂位点对染色质动力学进行高分辨率多重分析,并研究DNA修复和转录之间的相互作用。总体目标也是开发新的方法,当DNA受损时,产生单个哺乳动物细胞中染色质动力学的4D和纳米尺度视图,以定量了解细胞机制如何评估损伤并决定如何修复其基因组。
英文摘要
The genetic information in DNA, which is packaged in the form of chromatin, is protected from damage by multiple DNA repair pathways, and understanding how this critical task of DNA repair is performed is the long-term goal of this research. The project will examine real-time changes in chromatin in response to DNA damage in individual living cells with unprecedented spatial and temporal resolution, and thereby determine the significance of chromatin restructuring during DNA repair. In addition to advancing knowledge of DNA damage response and repair mechanisms, the project will develop and apply several innovative technologies that will likely be of great interest to other researchers. The PI and co-PI are committed to disseminating these techniques broadly in the research community. The multidisciplinary nature of this project will provide a unique and valuable training opportunity for graduate students and postdoctoral fellows as well as undergraduate and high school students. They are expected to learn fundamental and cutting-edge techniques relevant to studying DNA repair mechanisms in mammalian cells, including high-resolution imaging. The chromatin response to DNA damage is highly dynamic and must be regulated to maintain the appropriate architectural organization that promotes high-fidelity DNA repair and preserves genomic integrity. How these chromatin structural dynamics are coordinated with DNA repair is not well understood. The PIs will develop multiplexing novel fluorescence correlation methods including pair correlation spectroscopy (pCF) and nanoimaging tracking techniques to analyze how DNA damage affects chromatin dynamics and how that in turn dictates DNA repair pathway choice. These phenomena will be investigated in response to relatively simple DNA breaks or complex DNA damage lesions induced in different cellular contexts. Aim 1 includes monitoring changes in chromatin access at the damage site, interrogating the relationship to DNA repair pathway choice, and determining responsible factors. Aim 2 involves high-resolution multiplexed analyses of chromatin dynamics at defined DNA double-strand break sites, and investigating the interplay between DNA repair and transcription. An overall goal is also to develop new methods that yield 4D and nanoscale views of chromatin dynamics in single mammalian cells when DNA is damaged, for a quantitative understanding of how the cellular machinery assesses the damage and decides how to repair its genome.
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Nucleus-wide epigenetic response to DNA damage
  • 批准号:
    2013798
  • 项目类别:
    Standard Grant
  • 资助金额:
    $77.87万
  • 财政年份:
    2020
  • 负责人:
    Kyoko Yokomori
  • 依托单位:
国内基金
海外基金
大鱼际掌纹特应征与5个哮喘易感基因单核苷酸多态性的关联分析
  • 批准号:
    30873315
  • 项目类别:
    面上项目
  • 资助金额:
    31.0万元
  • 批准年份:
    2008
  • 负责人:
    周兆山
  • 依托单位: