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Updated: Oct 26, 2025

Isolation, Culture and Transduction of Adult Mouse Cardiomyocytes
Published on: August 28, 2016
A BMP4-p38 MAPK signaling axis controls ISL1 protein stability and activity during cardiogenesis
Yanyan Jing1, Yonggang Ren2, Hagen Roland Witzel3
1Department of Anatomy and Developmental Biology, European Center for Angioscience (ECAS), Medical Faculty Mannheim, Heidelberg University, Ludolf-Krehl-Street 7-11, 68167 Mannheim, Germany; Max-Planck-Institute for Heart and Lung Research, Bad Nauheim, Germany.
Abstract:
During development, cells respond rapidly to intra- and intercellular signals, which induce signaling cascades regulating the activity of transcription factors at the transcriptional and/or post-translational level. The transcription factor ISL1 plays a key role in second heart field development and cardiac differentiation, and its mRNA levels are tightly regulated during cardiogenesis. Here, we show that a BMP-p38 MAPK signaling axis controls ISL1 protein function at the post-translational level. BMP-mediated activation of p38 MAPK leads to ISL1 phosphorylation at S269 by p38, which prevents ISL1 degradation and ensures its transcriptional activity during cardiogenesis. Interfering with p38 MAPK signaling leads to the degradation of ISL1 by the proteasome, resulting in defects in cardiomyocyte differentiation and impaired zebrafish and mouse heart morphogenesis and function. Given the critical role of the tight control of ISL1 activity during cardiac lineage diversification, modulation of BMP4-p38 MAPK signaling could direct differentiation into specific cardiac cell subpopulations.
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