TAD boundary deletion causes PITX2-related cardiac electrical and structural defects
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Published:2024-04-20
Issue:1
Volume:15
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Baudic ManonORCID, Murata HiroshigeORCID, Bosada Fernanda M., Melo Uirá SoutoORCID, Aizawa Takanori, Lindenbaum PierreORCID, van der Maarel Lieve E.ORCID, Guedon Amaury, Baron Estelle, Fremy Enora, Foucal Adrien, Ishikawa TaisukeORCID, Ushinohama Hiroya, Jurgens Sean J.ORCID, Choi Seung HoanORCID, Kyndt Florence, Le Scouarnec Solena, Wakker Vincent, Thollet Aurélie, Rajalu Annabelle, Takaki Tadashi, Ohno SeikoORCID, Shimizu Wataru, Horie MinoruORCID, Kimura Takeshi, Ellinor Patrick T.ORCID, Petit FlorenceORCID, Dulac Yves, Bru Paul, Boland Anne, Deleuze Jean-François, Redon RichardORCID, Le Marec HervéORCID, Le Tourneau ThierryORCID, Gourraud Jean-Baptiste, Yoshida YoshinoriORCID, Makita NaomasaORCID, Vieyres Claude, Makiyama Takeru, Mundlos Stephan, Christoffels Vincent M.ORCID, Probst Vincent, Schott Jean-Jacques, Barc JulienORCID
Abstract
AbstractWhile 3D chromatin organization in topologically associating domains (TADs) and loops mediating regulatory element-promoter interactions is crucial for tissue-specific gene regulation, the extent of their involvement in human Mendelian disease is largely unknown. Here, we identify 7 families presenting a new cardiac entity associated with a heterozygous deletion of 2 CTCF binding sites on 4q25, inducing TAD fusion and chromatin conformation remodeling. The CTCF binding sites are located in a gene desert at 1 Mb from the Paired-like homeodomain transcription factor 2 gene (PITX2). By introducing the ortholog of the human deletion in the mouse genome, we recapitulate the patient phenotype and characterize an opposite dysregulation of PITX2 expression in the sinoatrial node (ectopic activation) and ventricle (reduction), respectively. Chromatin conformation assay performed in human induced pluripotent stem cell-derived cardiomyocytes harboring the minimal deletion identified in family#1 reveals a conformation remodeling and fusion of TADs. We conclude that TAD remodeling mediated by deletion of CTCF binding sites causes a new autosomal dominant Mendelian cardiac disorder.
Funder
Agence Nationale de la Recherche
Publisher
Springer Science and Business Media LLC
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