4.4 Article

Embryonic cardiomyocyte expression of endothelial genes

Journal

DEVELOPMENTAL DYNAMICS
Volume 236, Issue 9, Pages 2512-2522

Publisher

WILEY
DOI: 10.1002/dvdy.21276

Keywords

heart; cardiomyocyte; endothelial cell; von Willebrand factor; Flk-1; Vezf1

Funding

  1. NHLBI NIH HHS [HL064387, T32 HL07312] Funding Source: Medline

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Vertebrate precardiac mesoderm contains cells destined to become cardiomyocyte or endothelial cells. To determine the stability of these phenotypes freshly isolated embryonic day (E) 2.5-E6 chicken hearts were immunostained for myosin heavy chain (MyHC) to identify cardiomyocytes, and von Willebrand factor (vWF) and Flk-1 to identify endothelial cells. At E2.5-E3,90% of cells express only MyHC and 6% express only vWF/Flk-1. However, 2% MyHC(+) cells in E2.5-E3 hearts and 0.3% in E4-E6 hearts, also express vWF/Flk-1; and when cultured 3 days, > 40% of the MyHC(+) cells express vWF/Flk-1, but they do not express Vezf1, vascular endothelial cadherin, or Tie2. Thus, only a subset of endothelial genes are induced in cultured cardiomyocytes. While the subsequent developmental fate of embryonic heart cells exhibiting a vWF(+)/MyHC(+) phenotype is unknown, analysis of this phenotype may provide information pertinent to mechanisms of cell phenotype stability, cellular transdifferentiation, and induction of stable cell types from embryonic stem cells.

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