A Mesp1-dependent developmental breakpoint in transcriptional and epigenomic specification of early cardiac precursors

Author:

Krup Alexis Leigh12ORCID,Winchester Sarah A. B.2,Ranade Sanjeev S.2ORCID,Agrawal Ayushi2ORCID,Devine W. Patrick3,Sinha Tanvi4,Choudhary Krishna2ORCID,Dominguez Martin H.2456,Thomas Reuben2,Black Brian L.47,Srivastava Deepak2789,Bruneau Benoit G.2891011ORCID

Affiliation:

1. University of California 1 Biomedical Sciences Program , , San Francisco, CA 94158 , USA

2. Gladstone Institutes of Cardiovascular Disease, Gladstone Institutes 2 , San Francisco, CA 94158 , USA

3. University of California 3 Department of Pathology , , San Francisco, CA 94158 , USA

4. Cardiovascular Research Institute, University of California 4 , San Francisco, CA 94158 , USA

5. University of California 5 Department of Medicine, Division of Cardiology , , San Francisco, CA 94158 , USA

6. Cardiovascular Institute and Department of Medicine, University of Pennsylvania 6 , Philadelphia, PA 19104 , USA

7. University of California 7 Department of Biochemistry and Biophysics , , San Francisco, CA 94158 , USA

8. University of California 8 Department of Pediatrics , , San Francisco, CA 94158 , USA

9. Roddenberry Center for Stem Cell Biology and Medicine, Gladstone Institutes 9 , San Francisco, CA 94158 , USA

10. Institute of Human Genetics, University of California 10 , San Francisco, CA 94158 , USA

11. Eli and Edythe Broad Center of Regeneration Medicine and Stem Cell Research, University of California 11 , San Francisco, CA 94158 , USA

Abstract

ABSTRACT Transcriptional networks governing cardiac precursor cell (CPC) specification are incompletely understood owing, in part, to limitations in distinguishing CPCs from non-cardiac mesoderm in early gastrulation. We leveraged detection of early cardiac lineage transgenes within a granular single-cell transcriptomic time course of mouse embryos to identify emerging CPCs and describe their transcriptional profiles. Mesp1, a transiently expressed mesodermal transcription factor, is canonically described as an early regulator of cardiac specification. However, we observed perdurance of CPC transgene-expressing cells in Mesp1 mutants, albeit mislocalized, prompting us to investigate the scope of the role of Mesp1 in CPC emergence and differentiation. Mesp1 mutant CPCs failed to robustly activate markers of cardiomyocyte maturity and crucial cardiac transcription factors, yet they exhibited transcriptional profiles resembling cardiac mesoderm progressing towards cardiomyocyte fates. Single-cell chromatin accessibility analysis defined a Mesp1-dependent developmental breakpoint in cardiac lineage progression at a shift from mesendoderm transcriptional networks to those necessary for cardiac patterning and morphogenesis. These results reveal Mesp1-independent aspects of early CPC specification and underscore a Mesp1-dependent regulatory landscape required for progression through cardiogenesis.

Funder

National Heart, Lung, and Blood Institute

Roddenberry Foundation

L. K. Whittier Foundation

Younger Family Fund

National Science Foundation

American Heart Association

Children's Heart Foundation

Winslow Foundation

National Institutes of Health

Department of Medicine, University of California, San Francisco

National Center for Research Resources

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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