71 / 2024-10-18 18:54:05
Hyper Chromatin-hubs attract other regulatory elements to form complex and stable interaction structures to regulate cell differentiation in mammals
Transcription factors, 3D genome, Transcription regulation, Cell differentiation
摘要录用
沈昱 / 华中农业大学
孙嘉豪 / 华中农业大学
王磨阳 / 华中农业大学
胡明阳 / 崖州湾国家实验室
徐志祥 / 华中农业大学
齐晓龙 / 崖州湾国家实验室
刘鹏选 / 华中农业大学
周泓宏 / 崖州湾国家实验室
孙戈 / 华中农业大学
李礼 / 华中农业大学
朱猛进 / 华中农业大学
赵云霞 / 华中农业大学;崖州湾国家实验室
Abstract: The simultaneous engagement of multiple transcription factors (TFs) within open chromatin regions is a prevalent phenomenon in mammalian cells. However, the mechanisms by which TF cooperation modulates 3D genome architecture remain poorly understood. In this study, we performed ATAC-seq on different cells and tissues from humans, mice, and pigs to identify open chromatin regions (OCRs) and footprints, which represent transcription factor (TF) binding sites. We observed that a fraction of OCRs have numerous of TF binding, which possess a fine span length (300-5000bp) but can attract cis-regulatory elements to form more distant, stronger and structurally more complex chromatin interactions, we termed as "Hyper Chromatin-hubs (HChubs)". Interestingly, analysis of the motif characteristics of TFs binding in HChubs revealed that the strength of interactions between regulatory elements depends on the similarity of the TFs they bind, which enables HChubs with multiple TFs to act as attractors, thus forming more stable and complex interaction structures. Further joint analysis with RNA-seq showed that the HChubs are associated with higher gene transcriptional activity. Additionally, using differentiating myoblast cells as a model, we found that the gain or loss of footprints for muscle lineage-specific TFs (e.g., MyoD/MyoG, Cebpb, and Max) in HChub can affect chromatin looping and regulate cell differentiation. Moreover, Cebpb and MyoG were found to interact with MyoD and enhance its binding, as revealed by localization analysis among TFs within HChubs. Collectively, these insights enhance our comprehension of the role of TF interactions in 3D genome architecture and pivotal biological processes within mammalian systems.

 
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

主办单位
崖州湾国家实验室
华中农业大学
浙江大学
中国遗传学会
中国遗传学会三维基因组学专委会
承办单位
中国生物信息学基因组信息学专委会
中国遗传学会表观遗传分会
中国细胞生物学学会染色质生物学分会
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