pouC Regulates Expression of bmp4 During Atrioventricular Canal Formation in Zebrafish

被引:2
|
作者
Bhakta, Minoti [1 ]
Padanad, Mahesh S. [1 ]
Harris, John P. [1 ]
Lubczyk, Christina [1 ]
Amatruda, James F. [2 ,3 ]
Munshi, Nikhil V. [1 ,3 ,4 ,5 ]
机构
[1] UT Southwestern Med Ctr, Dept Internal Med Cardiol, Dallas, TX USA
[2] UT Southwestern Med Ctr, Dept Pediat, Dallas, TX USA
[3] UT Southwestern Med Ctr, Dept Mol Biol, Dallas, TX USA
[4] UT Southwestern Med Ctr, McDermott Ctr Human Growth & Dev, Dallas, TX USA
[5] UT Southwestern Med Ctr, Ctr Regenerat Sci & Med, Dallas, TX USA
关键词
atrioventricular canal; cardiac development; pouC; transcription factor; morphogenesis; EPITHELIAL-MESENCHYMAL TRANSITION; TRANSCRIPTION FACTOR TBX5; CONGENITAL HEART-DISEASE; CARDIAC CONDUCTION; GENE-EXPRESSION; DOMAIN PROTEIN; GATA4; MUTATIONS; MURINE; SYSTEM;
D O I
10.1002/dvdy.2
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Background Many human gene mutations have been linked to congenital heart disease (CHD), yet CHD remains a major health issue worldwide due in part to an incomplete understanding of the molecular basis for cardiac malformation. Results Here we identify the orthologous mouse Pou6f1 and zebrafish pouC as POU homeodomain transcription factors enriched in the developing heart. We find that pouC is a multi-functional transcriptional regulator containing separable activation, repression, protein-protein interaction, and DNA binding domains. Using zebrafish heart development as a model system, we demonstrate that pouC knockdown impairs cardiac morphogenesis and affects cardiovascular function. We also find that levels of pouC expression must be fine-tuned to enable proper heart formation. At the cellular level, we demonstrate that pouC knockdown disrupts atrioventricular canal (AVC) cardiomyocyte maintenance, although chamber myocyte specification remains intact. Mechanistically, we show that pouC binds a bmp4 intronic regulatory element to mediate transcriptional activation. Conclusions Taken together, our study establishes pouC as a novel transcriptional input into the regulatory hierarchy that drives AVC morphogenesis in zebrafish. We anticipate that these findings will inform future efforts to explore functional conservation in mammals and potential association with atrioventricular septal defects in humans. Developmental Dynamics 248:173-188, 2019. (c) 2018 Wiley Periodicals, Inc.
引用
收藏
页码:173 / 188
页数:16
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