Dusp6 attenuates Ras/MAPK signaling to limit zebrafish heart regeneration.

TitleDusp6 attenuates Ras/MAPK signaling to limit zebrafish heart regeneration.
Publication TypeJournal Article
Year of Publication2018
AuthorsMissinato MA, Saydmohammed M, Zuppo DA, Rao KS, Opie GW, Kühn B, Tsang M
JournalDevelopment
Volume145
Issue5
Date Published2018 Mar 06
ISSN1477-9129
KeywordsAnimals, Animals, Genetically Modified, Cell Proliferation, Down-Regulation, Dual Specificity Phosphatase 6, Heart, MAP Kinase Signaling System, Myocytes, Cardiac, Proto-Oncogene Proteins p21(ras), Regeneration, Signal Transduction, Zebrafish, Zebrafish Proteins
Abstract

Zebrafish regenerate cardiac tissue through proliferation of pre-existing cardiomyocytes and neovascularization. Secreted growth factors such as FGFs, IGF, PDGFs and Neuregulin play essential roles in stimulating cardiomyocyte proliferation. These factors activate the Ras/MAPK pathway, which is tightly controlled by the feedback attenuator Dual specificity phosphatase 6 (Dusp6), an ERK phosphatase. Here, we show that suppressing Dusp6 function enhances cardiac regeneration. Inactivation of Dusp6 by small molecules or by gene inactivation increased cardiomyocyte proliferation, coronary angiogenesis, and reduced fibrosis after ventricular resection. Inhibition of Erbb or PDGF receptor signaling suppressed cardiac regeneration in wild-type zebrafish, but had a milder effect on regeneration in dusp6 mutants. Moreover, in rat primary cardiomyocytes, NRG1-stimulated proliferation can be enhanced upon chemical inhibition of Dusp6 with BCI. Our results suggest that Dusp6 attenuates Ras/MAPK signaling during regeneration and that suppressing Dusp6 can enhance cardiac repair.

DOI10.1242/dev.157206
Alternate JournalDevelopment
PubMed ID29444893
PubMed Central IDPMC5868992
Grant ListR01 HD053287 / HD / NICHD NIH HHS / United States
T32 EB001026 / EB / NIBIB NIH HHS / United States