STAT5bis a key effector ofNRG‐1/ERBB4‐mediated myocardial growth

Author:

Vaparanta Katri123ORCID,Jokilammi Anne123ORCID,Paatero Ilkka1ORCID,Merilahti Johannes A1ORCID,Heliste Juho123ORCID,Hemanthakumar Karthik Amudhala45ORCID,Kivelä Riikka456ORCID,Alitalo Kari45ORCID,Taimen Pekka78ORCID,Elenius Klaus1239ORCID

Affiliation:

1. Turku Bioscience Centre University of Turku and Åbo Akademi University Turku Finland

2. Medicity Research Laboratories University of Turku Turku Finland

3. Institute of Biomedicine University of Turku Turku Finland

4. Wihuri Research Institute Helsinki Finland

5. Translational Cancer Biology Program, Research Programs Unit, Faculty of Medicine University of Helsinki Helsinki Finland

6. Faculty of Sport and Health Sciences University of Jyväskylä Jyväskylä Finland

7. Institute of Biomedicine and FICAN West Cancer Centre University of Turku Turku Finland

8. Department of Pathology Turku University Hospital Turku Finland

9. Department of Oncology Turku University Hospital Turku Finland

Abstract

AbstractThe growth factor Neuregulin‐1 (NRG‐1) regulates myocardial growth and is currently under clinical investigation as a treatment for heart failure. Here, we demonstrate in severalin vitroandin vivomodels that STAT5b mediates NRG‐1/EBBB4‐stimulated cardiomyocyte growth. Genetic and chemical disruption of the NRG‐1/ERBB4 pathway reduces STAT5b activation and transcription of STAT5b target genesIgf1,Myc, andCdkn1ain murine cardiomyocytes. Loss ofStat5balso ablates NRG‐1‐induced cardiomyocyte hypertrophy. Dynamin‐2 is shown to control the cell surface localization of ERBB4 and chemical inhibition of Dynamin‐2 downregulates STAT5b activation and cardiomyocyte hypertrophy. In zebrafish embryos, Stat5 is activated during NRG‐1‐induced hyperplastic myocardial growth, and chemical inhibition of the Nrg‐1/Erbb4 pathway or Dynamin‐2 leads to loss of myocardial growth and Stat5 activation. Moreover, CRISPR/Cas9‐mediated knockdown ofstat5bresults in reduced myocardial growth and cardiac function. Finally, the NRG‐1/ERBB4/STAT5b signaling pathway is differentially regulated at mRNA and protein levels in the myocardium of patients with pathological cardiac hypertrophy as compared to control human subjects, consistent with a role of the NRG‐1/ERBB4/STAT5b pathway in myocardial growth.

Funder

Aarne Koskelon Säätiö

Emil Aaltosen Säätiö

K. Albin Johanssons Stiftelse

Maud Kuistilan Muistosäätiö

Orionin Tutkimussäätiö

Paavo Nurmen Säätiö

Paulon Säätiö

Varsinais-Suomen Rahasto

Suomen Kulttuurirahasto

Syöpäsäätiö

Sydäntutkimussäätiö

Turun Yliopisto

Turun Yliopistollinen Keskussairaala

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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