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GATA6 mutations in hiPSCs inform mechanisms for maldevelopment of the heart, pancreas, and diaphragm

Authors :
Min Young Jang
Yuri Kim
Daniel Bernstein
Deepak Srivastava
Jonathan G. Seidman
Elizabeth Goldmuntz
Daniel M. DeLaughter
Manuel Schmid
Christopher N. Toepfer
David A. Conner
Angela Tai
Steven R. DePalma
Alexandre C. Pereira
Bruce D. Gelb
Jon A. L. Willcox
Meraj Neyazi
George A. Porter
Arun Sharma
Radhika Agarwal
Martin Tristani-Firouzi
Tarsha Ward
Lauren K. Wasson
Sarah U. Morton
Seongwon Kim
Joshua M. Gorham
Christine E. Seidman
Wendy K. Chung
Source :
eLife, eLife, Vol 9 (2020)
Publication Year :
2020
Publisher :
eLife Sciences Publications, Ltd, 2020.

Abstract

Damaging GATA6 variants cause cardiac outflow tract defects, sometimes with pancreatic and diaphragmic malformations. To define molecular mechanisms for these diverse developmental defects, we studied transcriptional and epigenetic responses to GATA6 loss of function (LoF) and missense variants during cardiomyocyte differentiation of isogenic human induced pluripotent stem cells. We show that GATA6 is a pioneer factor in cardiac development, regulating SMYD1 that activates HAND2, and KDR that with HAND2 orchestrates outflow tract formation. LoF variants perturbed cardiac genes and also endoderm lineage genes that direct PDX1 expression and pancreatic development. Remarkably, an exon 4 GATA6 missense variant, highly associated with extra-cardiac malformations, caused ectopic pioneer activities, profoundly diminishing GATA4, FOXA1/2, and PDX1 expression and increasing normal retinoic acid signaling that promotes diaphragm development. These aberrant epigenetic and transcriptional signatures illuminate the molecular mechanisms for cardiovascular malformations, pancreas and diaphragm dysgenesis that arise in patients with distinct GATA6 variants.

Details

Language :
English
ISSN :
2050084X
Volume :
9
Database :
OpenAIRE
Journal :
eLife
Accession number :
edsair.doi.dedup.....51de88b22f3a5c2a28b73b2abb3577b3