4.4 Article

Pitx2c Modulates Cardiac-Specific Transcription Factors Networks in Differentiating Cardiomyocytes from Murine Embryonic Stem Cells

Journal

CELLS TISSUES ORGANS
Volume 194, Issue 5, Pages 349-362

Publisher

KARGER
DOI: 10.1159/000323533

Keywords

Embryonic stem cells; Cardiomyocytes; Differentiation; Cell culture; Pitx2c

Funding

  1. VI FP Integrated Project Heart Failure and Cardiac Repair [LSHM-CT-2005-018630]
  2. Ministerio de Ciencia e Innovacion, Gobierno de Espana [BFU2008-01217]
  3. Junta de Andalucia [P08-CTS-3878, CTS-1614]

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Aim: The knowledge of the molecular signals that control cell differentiation into cardiomyocytes is critical to apply cell-based therapies and repair an injured heart. The transcription factor Pitx2 has essential roles in the development of different organs including the heart. Although a direct role of Pitx2 in the developing myocardium has recently been reported, the molecular pathways driven by Pitx2 as well as its cardiac target genes remain largely unexplored. The aim of this study was to unravel the molecular mechanisms driven by Pitx2 during the process of cardiomyocyte differentiation in vitro in mouse embryonic stem cell-derived cardiomyocytes. Methods and Results: Pitx2c was overexpressed in the R1-embryonic stem cell line. mRNA levels and protein distribution of several specific cardiac genes were analyzed by real-time PCR and immunohistochemistry experiments in R1-embryonic stem cell-derived beating areas at different stages of in vitro differentiation. Our results show that overexpression of Pitx2c in embryonic stem cell-derived cardiomyocytes is able to dynamically upregulate several cardiac-enriched transcription factors such as IsI1, Mef2c and Gata4. Additionally, Pitx2c induces the expression of chamber-specific cardiac genes such as Tbx5, Nppa and Cx40. These data were validated in an in vivo model of Pitx2 loss of function. Conclusion: Taken together, these results demonstrate that Pitx2 plays a major role reinforcing the transcriptional program of cardiac differentiation. Copyright (C) 2011 S. Karger AG, Basel

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