Single cell evaluation of endocardial Hand2 gene regulatory networks reveals HAND2-dependent pathways that impact cardiac morphogenesis

Author:

George Rajani M.12ORCID,Firulli Beth A.12ORCID,Podicheti Ram3,Rusch Douglas B.3,Mannion Brandon J.45ORCID,Pennacchio Len A.456,Osterwalder Marco478ORCID,Firulli Anthony B.12ORCID

Affiliation:

1. Herman B Wells Center for Pediatric Research 1 , Departments of Pediatrics, Anatomy and Medical and Molecular Genetics , , Indianapolis, IN 46202 , USA

2. Indiana Medical School 1 , Departments of Pediatrics, Anatomy and Medical and Molecular Genetics , , Indianapolis, IN 46202 , USA

3. Center for Genomics and Bioinformatics, Indiana University 2 , Bloomington, IN 47405 , USA

4. Lawrence Berkeley National Laboratory 3 Environmental Genomics and Systems Biology Division , , Berkeley, CA 94720 , USA

5. University of California 4 Comparative Biochemistry Program , , Berkeley, CA 94720 , USA

6. Lawrence Berkeley National Laboratory 5 US Department of Energy Joint Genome Institute , , Berkeley, CA 94720 , USA

7. University of Bern 6 Department for BioMedical Research (DBMR) , , Bern 3008 , Switzerland

8. Bern University Hospital 7 Department of Cardiology , , Bern 3010 , Switzerland

Abstract

ABSTRACT The transcription factor HAND2 plays essential roles during cardiogenesis. Hand2 endocardial deletion (H2CKO) results in tricuspid atresia or double inlet left ventricle with accompanying intraventricular septum defects, hypo-trabeculated ventricles and an increased density of coronary lumens. To understand the regulatory mechanisms of these phenotypes, single cell transcriptome analysis of mouse E11.5 H2CKO hearts was performed revealing a number of disrupted endocardial regulatory pathways. Using HAND2 DNA occupancy data, we identify several HAND2-dependent enhancers, including two endothelial enhancers for the shear-stress master regulator KLF2. A 1.8 kb enhancer located 50 kb upstream of the Klf2 TSS imparts specific endothelial/endocardial expression within the vasculature and endocardium. This enhancer is HAND2-dependent for ventricular endocardium expression but HAND2-independent for Klf2 vascular and valve expression. Deletion of this Klf2 enhancer results in reduced Klf2 expression within ventricular endocardium. These data reveal that HAND2 functions within endocardial gene regulatory networks including shear-stress response.

Funder

National Institutes of Health

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

University of California

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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