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Published on: February 24, 2017
Dyrk1a regulates the cardiomyocyte cell cycle via D-cyclin-dependent Rb/E2f-signalling
Susanne Hille1, Franziska Dierck1, Constantin Kühl1
1Department of Internal Medicine III, University Medical Center of Schleswig-Holstein, Campus Kiel, Arnold-Heller-Str. 3 (Building 6), 24105 Kiel, Germany DZHK (German Centre for Cardiovascular Research), Partner Site Hamburg/Kiel/Lübeck, Kiel, Germany.
Aims:
Down syndrome-associated dual-specificity tyrosine-(Y)-phosphorylation-regulated kinase 1A (DYRK1A) is a ubiquitously expressed protein kinase. Up to date a variety of targets have been identified, establishing a key role for Dyrk1a in selected signalling pathways. In cardiomyocytes, Dyrk1a acts as a negative regulator of hypertrophy by phosphorylating transcription factors of the NFAT family, but its mechanistic function in the heart remains poorly understood. This study was designed to investigate a potential protective role of Dyrk1a in cardiac hypertrophy in vivo.
Methods And Results:
We generated transgenic mice with cardiac-specific overexpression of Dyrk1a. Counterintuitively, these mice developed severe dilated cardiomyopathy associated with congestive heart failure and premature death. In search for the cause of this unexpected phenotype, we found that Dyrk1a interacts with all members of the D-cyclin family and represses their protein levels in vitro and in vivo. Particularly, forced expression of Dyrk1a leads to increased phosphorylation of Ccnd2 on Thr280 and promotes its subsequent proteasomal degradation. Accordingly, cardiomyocytes overexpressing Dyrk1a display hypo-phosphorylated Rb1, suppression of Rb/E2f-signalling, and reduced expression of E2f-target genes, which ultimately results in impaired cell cycle progression.
Conclusions:
We identified Dyrk1a as a novel negative regulator of D-cyclin-mediated Rb/E2f-signalling. As dysregulation of this pathway with impaired cardiomyocyte proliferation leads to cardiomyopathy, dose-specific Dyrk1a expression and activity appears to be critical for the hyperplastic and hypertrophic growth of the developing heart.
Insights
Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinase 1A (DYRK1A) normally regulates heart growth. Overexpression of DYRK1A in mice caused severe heart failure, revealing its critical role in regulating cardiac cell proliferation and signaling pathways.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Cell Signaling
Background:
- Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinase 1A (DYRK1A) is a key protein kinase involved in various signaling pathways.
- DYRK1A's role in cardiomyocytes, particularly its function as a negative regulator of cardiac hypertrophy, is not fully understood.
- This study aimed to investigate the protective role of DYRK1A in cardiac hypertrophy in vivo.
Purpose of the Study:
- To investigate the role of DYRK1A in cardiac hypertrophy.
- To explore the mechanistic function of DYRK1A in the heart.
- To determine the impact of DYRK1A on cardiomyocyte signaling and growth.
Main Methods:
- Generated transgenic mice with cardiac-specific overexpression of DYRK1A.
- Analyzed cardiac phenotype, including dilated cardiomyopathy and heart failure.
- Investigated the interaction of DYRK1A with D-cyclins and its effect on cell cycle regulators (Rb1, E2f).
Main Results:
- Cardiac-specific DYRK1A overexpression led to severe dilated cardiomyopathy, congestive heart failure, and premature death.
- DYRK1A interacts with D-cyclins, repressing their protein levels and promoting Ccnd2 degradation.
- Overexpression of DYRK1A resulted in hypo-phosphorylated Rb1, suppressed Rb/E2f signaling, and impaired cardiomyocyte cell cycle progression.
Conclusions:
- DYRK1A is identified as a novel negative regulator of D-cyclin-mediated Rb/E2f signaling.
- Dysregulation of this pathway by DYRK1A impairs cardiomyocyte proliferation, leading to cardiomyopathy.
- Dose-specific DYRK1A expression is critical for the hyperplastic and hypertrophic growth of the developing heart.
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