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中文摘要
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描述(由申请人提供):拟议研究的广泛、长期目标是在分子水平上确定体内DNA复制的机制。基因组的忠实复制对生命至关重要。这一过程中的任何干扰都可能导致基因组不稳定、细胞生长失控或细胞死亡。因此,研究DNA复制的机制不仅有助于基础生物学的广泛领域,而且有助于理解人类疾病(如癌症和发育障碍)的分子基础。DNA复制需要高度协调的招聘复制因子的复制起点在染色质的情况下。因此,预期复制起点周围的组蛋白修饰强烈影响DNA复制。因此,有证据支持组蛋白修饰在复制中的重要作用。然而,组蛋白修饰如何在DNA复制起点周围被调节,以及这些修饰如何影响DNA复制的不同步骤仍然是重要的未决问题。在目前的资助周期中,我们开发了一种非常有效的系统来纯化位于活跃复制起点附近的组蛋白。结合超灵敏的质谱分析,我们确定了以前未知的组蛋白修饰模式,这些模式特别存在于活跃的复制起点周围。此外,我们已经表明,这些修饰在DNA复制和/或细胞对复制应激的反应中起重要作用。在这个资助周期中,我们建议扩展这些发现,以阐明这些新发现的组蛋白修饰如何在分子水平上发挥作用。 公共卫生相关性:DNA复制和对复制应激的反应是保守的基本过程。这些过程中的任何异常都可能导致癌症、发育障碍或细胞死亡。我们工作的目标是了解DNA复制和复制应激反应的分子机制,这将有助于了解这些疾病状态的分子基础。
英文摘要
DESCRIPTION (provided by applicant): The broad, long term goal of the proposed study is to determine, at the molecular level, the mechanisms by which DNA replication occurs in vivo. Faithful duplication of the genome is essential for life. Any disturbance in this process can lead to genomic instability, unregulated cell growth or cell death. Therefore, studying the mechanisms of DNA replication will contribute not only to broad areas of basic biology, but also to understanding the molecular basis for human diseases, such as cancer and developmental disorders. DNA replication requires highly coordinated recruitment of replication factors to replication origins in a chromatin context. It is therefore expected that histone modifications around replication origins strongly affect DNA replication. Accordingly, there is supporting evidence for significant roles of histone modifications in replication. However, how histone modifications are regulated around DNA replication origins and how these modifications affect different steps of DNA replication still remain as important open questions. In the current funding cycle of this grant, we have developed an extremely efficient system to purify histones that are located near an active replication origin. Combined with ultra-sensitive mass spectrometry analyses, we identified previously unknown patterns of histone modifications that are present specifically around an active replication origin. Furthermore, we have shown that these modifications play important roles in DNA replication and/or cellular responses to replication stress. In this funding cycle, we propose to extend these findings to elucidate how these newly identified histone modifications function at the molecular level. PUBLIC HEALTH RELEVANCE: DNA replication and response to replication stress are conserved essential processes. Any abnormality in these processes can lead to cancer, developmental disorder or cell death. The goal of our work is to understand the molecular mechanisms of DNA replication and replication stress response, which will help understand the molecular basis for these disease states.
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Molecular mechanisms and functions of global chromatin control
Molecular mechanisms and functions of global chromatin control
  • 批准号:
    10543987
  • 项目类别:
  • 资助金额:
    $81.34万
  • 财政年份:
    2021
  • 负责人:
    TOSHIO TSUKIYAMA
  • 依托单位:
Molecular mechanisms and functions of global chromatin control
Molecular mechanisms and functions of global chromatin control
  • 批准号:
    10645489
  • 项目类别:
  • 资助金额:
    $74.06万
  • 财政年份:
    2021
  • 负责人:
    TOSHIO TSUKIYAMA
  • 依托单位:
海外基金