Back to Search Start Over

Insight into the regulatory mechanism of dynamic chromatin 3D interactions during cardiomyocyte differentiation in human

Authors :
Hui Liu
Yingying Ma
Jiaxin Yu
Xiang Chen
Shuyuan Wang
Yijie Jia
Na Ding
Xiaoyan Jin
Yunpeng Zhang
Juan Xu
Xia Li
Source :
Molecular Therapy: Nucleic Acids, Vol 33, Iss , Pp 629-641 (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

Cardiogenesis is an extremely complicated process involved with DNA regulatory elements, and trans factors regulate gene expression pattern spatiotemporally. Enhancers, as the well-known DNA elements, activate target gene expression by transcription factors (TFs) occupied to organize dynamic three-dimensional (3D) interactions, which when affected or interrupted might cause heart defects or diseases. In this study, we integrated transcriptome, 3D genome, and regulatome to reorganize the global 3D genome in cardiomyogenesis, showing a gradually decreased trend of both chromatin interactions and topological associating domains (TADs) during cardiomyocyte differentiation. And almost all of the chromatin interactions occurred within the same or between adjacent TADs involved with enhancers, indicating that dynamical rewiring of enhancer-related chromatin interactions in the continuous expansive TADs is closely correlated to cardiogenesis. Moreover, we found stage-specific interactions activate stage-specific expression to be involved within corresponding biological functions, and the stage-specific combined regulations of enhancers and binding TFs form connected networks to control stage-specific expression and biological processes, which promote cardiomyocyte differentiation. Finally, we identified markers based on regulatory networks, which might drive cardiac development. This study demonstrates the power of enhancer interactome combined with active TFs to reveal insights into transcriptional regulatory networks during cardiomyogenesis.

Details

Language :
English
ISSN :
21622531
Volume :
33
Issue :
629-641
Database :
Directory of Open Access Journals
Journal :
Molecular Therapy: Nucleic Acids
Publication Type :
Academic Journal
Accession number :
edsdoj.b924b9ca3680452e8ccbccfbe23dd850
Document Type :
article
Full Text :
https://doi.org/10.1016/j.omtn.2023.07.033