CHD4 and SMYD1 repress common transcriptional programs in the developing heart

Author:

Shi Wei1,Wasson Lauren K.23,Dorr Kerry M.1,Robbe Zachary L.1,Wilczewski Caralynn M.1,Hepperla Austin J.4,Davis Ian J.4,Seidman Christine E.235,Seidman Jonathan G.2,Conlon Frank L.14ORCID

Affiliation:

1. McAllister Heart Institute, UNC-Chapel Hill 1 Department of Biology and Genetics , , Chapel Hill, NC 27599 , USA

2. 2 Department of Genetics, Harvard Medical School, Boston, MA 02115, USA

3. Department of Medicine and Howard Hughes Medical Institute 3 , Chevy Chase, MD 20815 , USA

4. Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill 4 , Chapel Hill, NC 27599 , USA

5. Brigham and Women's Hospital 5 Division of Cardiovascular Medicine , , Boston, MA 02115 , USA

Abstract

ABSTRACT Regulation of chromatin states is essential for proper temporal and spatial gene expression. Chromatin states are modulated by remodeling complexes composed of components that have enzymatic activities. CHD4 is the catalytic core of the nucleosome remodeling and deacetylase (NuRD) complex, which represses gene transcription. However, it remains to be determined how CHD4, a ubiquitous enzyme that remodels chromatin structure, functions in cardiomyocytes to maintain heart development. In particular, whether other proteins besides the NuRD components interact with CHD4 in the heart is controversial. Using quantitative proteomics, we identified that CHD4 interacts with SMYD1, a striated muscle-restricted histone methyltransferase that is essential for cardiomyocyte differentiation and cardiac morphogenesis. Comprehensive transcriptomic and chromatin accessibility studies of Smyd1 and Chd4 null embryonic mouse hearts revealed that SMYD1 and CHD4 repress a group of common genes and pathways involved in glycolysis, response to hypoxia, and angiogenesis. Our study reveals a mechanism by which CHD4 functions during heart development, and a previously uncharacterized mechanism regarding how SMYD1 represses cardiac transcription in the developing heart.

Funder

National Institutes of Health

Howard Hughes Medical Institute

University of North Carolina at Chapel Hill

Publisher

The Company of Biologists

Reference45 articles.

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