BMP10 is essential for maintaining cardiac growth during murine cardiogenesis
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- 1 May 2004
- journal article
- Published by The Company of Biologists in Development
- Vol. 131 (9) , 2219-2231
- https://doi.org/10.1242/dev.01094
Abstract
During cardiogenesis, perturbation of a key transition at mid-gestation from cardiac patterning to cardiac growth and chamber maturation often leads to diverse types of congenital heart disease, such as ventricular septal defect (VSD), myocardium noncompaction, and ventricular hypertrabeculation. This transition, which occurs at embryonic day (E) 9.0-9.5 in murine embryos and E24-28 in human embryos, is crucial for the developing heart to maintain normal cardiac growth and function in response to an increasing hemodynamic load. Although, ventricular trabeculation and compaction are key morphogenetic events associated with this transition, the molecular and cellular mechanisms are currently unclear. Initially, cardiac restricted cytokine bone morphogenetic protein 10 (BMP10) was identified as being upregulated in hypertrabeculated hearts from mutant embryos deficient in FK506 binding protein 12 (FKBP12). To determine the biological function of BMP10 during cardiac development, we generated BMP10-deficient mice. Here we describe an essential role of BMP10 in regulating cardiac growth and chamber maturation. BMP10 null mice display ectopic and elevated expression of p57kip2 and a dramatic reduction in proliferative activity in cardiomyocytes at E9.0-E9.5. BMP10 is also required for maintaining normal expression levels of several key cardiogenic factors (e.g. NKX2.5 and MEF2C) in the developing myocardium at mid-gestation. Furthermore, BMP10-conditioned medium is able to rescue BMP10-deficient hearts in culture. Our data suggest an important pathway that involves a genetic interaction between BMP10, cell cycle regulatory proteins and several major cardiac transcription factors in orchestrating this transition in cardiogenesis at mid-gestation. This may provide an underlying mechanism for understanding the pathogenesis of both structural and functional congenital heart defects.Keywords
This publication has 48 references indexed in Scilit:
- Retroviral-mediated expression of recombinant Fancc enhances the repopulating ability of Fancc−/−hematopoietic stem cells and decreases the risk of clonal evolutionBlood, 2003
- Methods on In Situ Hybridization, Immunohistochemistry and -Galactosidase Reporter Gene DetectionEuropean Journal of Morphology, 2001
- The Small Muscle-Specific Protein Csl Modifies Cell Shape and Promotes Myocyte Fusion in an Insulin-like Growth Factor 1–Dependent MannerThe Journal of cell biology, 2001
- Altered cell differentiation and proliferation in mice lacking p57KIP2 indicates a role in Beckwith–Wiedemann syndromeNature, 1997
- The Immunophilin FKBP12 Functions as a Common Inhibitor of the TGFβ Family Type I ReceptorsPublished by Elsevier ,1996
- Heterozygous embryonic lethality induced by targeted inactivation of the VEGF geneNature, 1996
- Requirement for neuregulin receptor erbB2 in neural and cardiac developmentNature, 1995
- Aberrant neural and cardiac development in mice lacking the ErbB4 neuregulin receptorNature, 1995
- Multiple essential functions of neuregulin in developmentNature, 1995
- High affinity VEGF binding and developmental expression suggest Flk-1 as a major regulator of vasculogenesis and angiogenesisCell, 1993