Cohesin ensures architectural coupling of replication forks
编号:68 访问权限:仅限参会人 更新:2024-10-27 17:00:37 浏览:416次 主旨报告

报告开始:2024年11月02日 10:10(Asia/Shanghai)

报告时间:30min

所在会场:[p2] 大会报告2 [p2] 大会报告2

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摘要
DNA replication encounters numerous chromatin metabolic activities during the elongation process, yet the organization of multiple replication forks in mammalian cells and the impact of chromatin structures on DNA replication remain poorly understood. To address this, we developed the replication-associated in situ HiC (Repli-HiC) method to capture chromatin interactions involving nascent DNA, identifying over 2,600 fountain-like chromatin contact structures, indicative of replication fork coupling in human cells. Here, our findings demonstrate that two replication forks can be tethered in various ways, including architectural tethering by Cohesin and functional tethering by AND1. Dysfunction in Cohesin results in the failure to couple adjacent replication forks, while increasing the coupling of distal replication forks. Moreover, perturbation of fork coupling leads to fork instability, failure to restart stalled forks, and an increase in DNA breaks and chromosomal translocations, particularly enriched in chromatin fountain regions. These findings reveal the molecular mechanisms and physiological roles of fork coupling, offering new insights into the role of 3D genomics in DNA replication progression within mammalian cells.
关键词
replication forks, fork coupling, genome stablity
报告人
胡家志 (Jiazhi Hu)
北京大学 (Peking University)

稿件作者
胡家志 北京大学
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重要日期
  • 会议日期

    10月31日

    2024

    11月03日

    2024

  • 11月03日 2024

    注册截止日期

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华中农业大学
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中国遗传学会三维基因组学专委会
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中国生物信息学基因组信息学专委会
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