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PMID: 16314491 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Bmp2 is essential for cardiac cushion epithelial-mesenchymal transition and myocardial patterning.

Development (Cambridge, England) ·Vol. 132 ·No. 24 ·2005-12-00 ·Pages 5601-11

Ma L, Lu MF, Schwartz RJ, Martin JF

Abstract

Cardiac cushion development provides a valuable system to investigate epithelial to mesenchymal transition (EMT), a fundamental process in development and tumor progression. In the atrioventricular (AV) canal, endocardial cells lining the heart respond to a myocardial-derived signal, undergo EMT, and contribute to cushion mesenchyme. Here, we inactivated bone morphogenetic protein 2 (Bmp2) in the AV myocardium of mice. We show that Bmp2 has three functions in the AV canal: to enhance formation of the cardiac jelly, to induce endocardial EMT and to pattern the AV myocardium. Bmp2 is required for myocardial expression of Has2, a crucial component of the cardiac jelly matrix. During EMT, Bmp2 promotes expression of the basic helix-loop-helix factor Twist1, previously implicated in EMT in cancer metastases, and the homeobox genes Msx1 and Msx2. Deletion of the Bmp type 1A receptor, Bmpr1a, in endocardium also resulted in failed cushion formation, indicating that Bmp2 signals directly to cushion-forming endocardium to induce EMT. Lastly, we show that Bmp2 mutants failed to specify the AV myocardium with loss of Tbx2 expression uncovering a myocardial, planar signaling function for Bmp2. Our data indicate that Bmp2 has a crucial role in coordinating multiple aspects of AV canal morphogenesis.

MeSH Terms
Animals Body Patterning Bone Morphogenetic Protein 2 Bone Morphogenetic Protein Receptors, Type I/metabolism Bone Morphogenetic Proteins/genetics,physiology DNA-Binding Proteins/metabolism Endocardium/embryology,physiology Epithelium/embryology,physiology Glucuronosyltransferase/metabolism Heart/embryology,physiology Homeodomain Proteins/metabolism Hyaluronan Synthases MSX1 Transcription Factor/metabolism Mesoderm/physiology Mice Morphogenesis Mutation Nuclear Proteins/metabolism Signal Transduction Transforming Growth Factor beta/genetics,physiology Twist-Related Protein 1/metabolism
Chemicals
Bmp2 protein, mouse Bone Morphogenetic Protein 2 Bone Morphogenetic Proteins DNA-Binding Proteins Homeodomain Proteins MSX1 Transcription Factor MSX2 protein Msx1 protein, mouse Nuclear Proteins Transforming Growth Factor beta Twist-Related Protein 1 Twist1 protein, mouse Glucuronosyltransferase Has2 protein, mouse Hyaluronan Synthases Bmpr1a protein, mouse Bone Morphogenetic Protein Receptors, Type I
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ma Lijiang
Institute of Biosciences and Technology, Texas A&M University System Health Science Center, 2121 West Holcombe Boulevard, Houston, TX 77030, USA.
Lu Mei-Fang
Schwartz Robert J
Martin James F
Article Info
Journal
Development (Cambridge, England)
Abbr.
Development
ISSN
0950-1991
Published
2005-12-00
Pages
5601-11
Language
English
Region
England
NLM ID
8701744
Subset
IM
Grants
NIDCR NIH HHS · 2R01DE/HD12324-06 · United States
NIEHS NIH HHS · P30 ES9106-07 · United States
NIDCR NIH HHS · R01DE013509 · United States
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