Hits:
Indexed by:Journal Papers
Date of Publication:2015-05-01
Journal:CELLULAR AND MOLECULAR LIFE SCIENCES
Included Journals:SCIE、Scopus
Volume:72
Issue:10
Page Number:2005-2022
ISSN No.:1420-682X
Key Words:Cardiogenesis; Sarcomeric myosin heavy chain; Pluripotent mouse embryonal carcinoma cells; Signaling transduction; Gene regulation
Abstract:The regulation of cardiac differentiation is critical for maintaining normal cardiac development and function. The precise mechanisms whereby cardiac differentiation is regulated remain uncertain. Here, we have identified a GATA-4 target, EGF, which is essential for cardiogenesis and regulates cardiac differentiation in a dose- and time-dependent manner. Moreover, EGF demonstrates functional interaction with GATA-4 in inducing the cardiac differentiation of P19CL6 cells in a time- and dose-dependent manner. Biochemically, GATA-4 forms a complex with STAT3 to bind to the EGF promoter in response to EGF stimulation and cooperatively activate the EGF promoter. Functionally, the cooperation during EGF activation results in the subsequent activation of cyclin D1 expression, which partly accounts for the lack of additional induction of cardiac differentiation by the GATA-4/STAT3 complex. Thus, we propose a model in which the regulatory cascade of cardiac differentiation involves GATA-4, EGF, and cyclin D1.
Pre One:Association of Monocyte Chemoattractant Protein-1 (MCP-1)-2518A > G Polymorphism with Susceptibility to Coronary Artery Disease: A Meta-Analysis
Next One:FOXK2 Transcription Factor Suppresses ER alpha-positive Breast Cancer Cell Growth Through Down-Regulating the Stability of ER alpha via mechanism involving BRCA1/BARD1