Notch signaling regulates Hey2 expression in a spatiotemporal dependent manner during cardiac morphogenesis and trabecular specification

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作者
Lianjie Miao
Jingjing Li
Jun Li
Xueying Tian
Yangyang Lu
Saiyang Hu
David Shieh
Ryan Kanai
Bo-yang Zhou
Bin Zhou
Jiandong Liu
Anthony B. Firulli
James F. Martin
Harold Singer
Bin Zhou
Hongbo Xin
Mingfu Wu
机构
[1] Albany Medical College,Department of Molecular and Cellular Physiology
[2] Nanchang University,Institute of Translational Medicine
[3] Nanchang University,School of Life Sciences
[4] The State Key Laboratory of Cell Biology,Department of Genetics
[5] Shanghai Institute of Biochemistry and Cell Biology,Department of Pathology and Laboratory Medicine
[6] Chinese Academy of Sciences,undefined
[7] University of Chinese Academy of Sciences,undefined
[8] Albert Einstein College of Medicine of Yeshiva University,undefined
[9] Bronx,undefined
[10] McAllister Heart Institute,undefined
[11] University of North Carolina at Chapel Hill,undefined
[12] Riley Heart Research Center,undefined
[13] Wells Center for Pediatric Research,undefined
[14] Departments of Pediatrics and Medical and Molecular Genetics,undefined
[15] Indiana University,undefined
[16] Department of Molecular Physiology and Biophysics,undefined
[17] Baylor College of Medicine,undefined
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摘要
Hey2 gene mutations in both humans and mice have been associated with multiple cardiac defects. However, the currently reported localization of Hey2 in the ventricular compact zone cannot explain the wide variety of cardiac defects. Furthermore, it was reported that, in contrast to other organs, Notch doesn’t regulate Hey2 in the heart. To determine the expression pattern and the regulation of Hey2, we used novel methods including RNAscope and a Hey2CreERT2 knockin line to precisely determine the spatiotemporal expression pattern and level of Hey2 during cardiac development. We found that Hey2 is expressed in the endocardial cells of the atrioventricular canal and the outflow tract, as well as at the base of trabeculae, in addition to the reported expression in the ventricular compact myocardium. By disrupting several signaling pathways that regulate trabeculation and/or compaction, we found that, in contrast to previous reports, Notch signaling and Nrg1/ErbB2 regulate Hey2 expression level in myocardium and/or endocardium, but not its expression pattern: weak expression in trabecular myocardium and strong expression in compact myocardium. Instead, we found that FGF signaling regulates the expression pattern of Hey2 in the early myocardium, and regulates the expression level of Hey2 in a Notch1 dependent manner.
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