CHD-associated enhancers shape human cardiomyocyte lineage commitment

Author:

Armendariz Daniel A1ORCID,Goetsch Sean C2ORCID,Sundarrajan Anjana1,Sivakumar Sushama2ORCID,Wang Yihan1,Xie Shiqi1,Munshi Nikhil V234ORCID,Hon Gary C145ORCID

Affiliation:

1. Cecil H. and Ida Green Center for Reproductive Biology Sciences, University of Texas Southwestern Medical Center

2. Department of Internal Medicine, University of Texas Southwestern Medical Center

3. Division of Cardiology, Department of Molecular Biology, McDermott Center for Human Growth and Development, University of Texas Southwestern Medical Center

4. Hamon Center for Regenerative Science and Medicine, University of Texas Southwestern Medical Center

5. Lyda Hill Department of Bioinformatics, Department of Obstetrics and Gynecology, University of Texas Southwestern Medical Center

Abstract

Enhancers orchestrate gene expression programs that drive multicellular development and lineage commitment. Thus, genetic variants at enhancers are thought to contribute to developmental diseases by altering cell fate commitment. However, while many variant-containing enhancers have been identified, studies to endogenously test the impact of these enhancers on lineage commitment have been lacking. We perform a single-cell CRISPRi screen to assess the endogenous roles of 25 enhancers and putative cardiac target genes implicated in genetic studies of congenital heart defects (CHDs). We identify 16 enhancers whose repression leads to deficient differentiation of human cardiomyocytes (CMs). A focused CRISPRi validation screen shows that repression of TBX5 enhancers delays the transcriptional switch from mid- to late-stage CM states. Endogenous genetic deletions of two TBX5 enhancers phenocopy epigenetic perturbations. Together, these results identify critical enhancers of cardiac development and suggest that misregulation of these enhancers could contribute to cardiac defects in human patients.

Funder

NIH

CPRIT

Burroughs Wellcome Fund

Welch Foundation

Department of Defense

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference52 articles.

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2. Disease model of GATA4 mutation reveals transcription factor cooperativity in human cardiogenesis;Ang;Cell,2016

3. CHD-associated-enhancers-shape-human-cardiomyocyte-lineage-commitment;Armendariz,2023

4. Mutations in human TBX5 [corrected] cause limb and cardiac malformation in holt-oram syndrome;Basson;Nature Genetics,1997

5. Advances in the genetics of congenital heart disease: A clinician’s guide;Blue;Journal of the American College of Cardiology,2017

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