Gata6 functions in zebrafish endoderm to regulate late differentiating arterial pole cardiogenesis.

TitleGata6 functions in zebrafish endoderm to regulate late differentiating arterial pole cardiogenesis.
Publication TypeJournal Article
Year of Publication2024
AuthorsSam, J, Torregroza, I, Evans, T
JournalDevelopment
Date Published2024 Aug 12
ISSN1477-9129
Abstract

Mutations in GATA6 are associated with congenital heart disease, most notably conotruncal structural defects. However, how GATA6 regulates cardiac morphology during embryogenesis is undefined. We used knockout and conditional mutant zebrafish alleles to investigate the spatiotemporal role of gata6 during cardiogenesis. Loss of gata6 specifically impacts atrioventricular valve formation and recruitment of epicardium, with a prominent loss of arterial pole cardiac cells including for the ventricle and outflow tract. However, there are no obvious defects in cardiac progenitor cell specification, proliferation, or death. Conditional loss of gata6 starting at 24 hr is sufficient to disrupt the addition of late differentiating cardiomyocytes at the arterial pole with decreased expression levels of anterior second heart field (aSHF) markers spry4 and mef2cb. Conditional loss of gata6 in the endoderm is sufficient to phenocopy the straight knockout resulting in a significant loss of ventricular and outflow tract tissue. Exposure to a Dusp6 inhibitor largely rescues the loss of ventricular cells in gata6-/- larvae. Thus, gata6 functions in endoderm mediated by FGF signaling to regulate the addition of anterior SHF progenitor derivatives during heart formation.

DOI10.1242/dev.202895
Alternate JournalDevelopment
PubMed ID39133135
Grant ListR35 HL135778 / NH / NIH HHS / United States
C32558GG / / New York State Department of Health - Wadsworth Center /