Specificity, redundancy and dosage thresholds among gata4/5/6 genes during zebrafish cardiogenesis

Abstract

The Gata4/5/6 sub-family of zinc finger transcription factors regulate many aspects of cardiogenesis. However, critical roles in extra-embryonic endoderm also challenge comprehensive analysis during early mouse cardiogenesis, while zebrafish models have previously relied on knockdown assays. We generated targeted deletions to disrupt each gata4/5/6 gene in zebrafish and analyzed cardiac phenotypes in single, double and triple mutants. The analysis confirmed that loss of gata5 causes cardia bifida and validated functional redundancies for gata5/6 in cardiac precursor specification. Surprisingly, we discovered that gata4 is dispensable for early zebrafish development, while loss of one gata4 allele can suppress the bifid phenotype of the gata5 mutant. The gata4 mutants eventually develop an age-dependent cardiomyopathy. By combining combinations of mutant alleles, we show that cardiac specification depends primarily on an overall dosage of gata4/5/6 alleles rather than a specific gene. We also identify a specific role for gata6 in controlling ventricle morphogenesis through regulation of both the first and second heart field, while loss of both gata4/6 eliminates the ventricle. Thus, different developmental programs are dependent on total dosage, certain pairs, or specific gata4/5/6 genes during embryonic cardiogenesis.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jun 15, 2020
Source ID
10.1242/bio.053611

Entities

People

  • Emily J. Mercer
  • Ingrid Torregroza
  • Jessica Sam
  • Kelly M. Banks
  • Todd Evans

Organizations

  • National Institutes of Health
  • New York State Department of Health
  • United States Department of Defense
  • Weill Cornell Medicine

Tags

Fields of Study

  • Biology

Readers

  • Allergy and Immunology.
  • Molecular Biology and Genetics