Mesp1 controls the chromatin and enhancer landscapes essential for spatiotemporal patterning of early cardiovascular progenitors.
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Authors
Lin, Xionghui
Ghazanfar, Shila
Paulissen, Catherine
Baudelet, Elodie
Plaindoux, Elise
Achouri, Younes
Calonne, Emilie
Dubois, Christine
Mansfield, William
Publication Date
2022-07Journal Title
Nat Cell Biol
ISSN
1465-7392
Publisher
Springer Science and Business Media LLC
Type
Article
This Version
AM
Metadata
Show full item recordCitation
Lin, X., Swedlund, B., Ton, M. N., Ghazanfar, S., Guibentif, C., Paulissen, C., Baudelet, E., et al. (2022). Mesp1 controls the chromatin and enhancer landscapes essential for spatiotemporal patterning of early cardiovascular progenitors.. Nat Cell Biol https://doi.org/10.1038/s41556-022-00947-3
Abstract
The mammalian heart arises from various populations of Mesp1-expressing cardiovascular progenitors (CPs) that are specified during the early stages of gastrulation. Mesp1 is a transcription factor that acts as a master regulator of CP specification and differentiation. However, how Mesp1 regulates the chromatin landscape of nascent mesodermal cells to define the temporal and spatial patterning of the distinct populations of CPs remains unknown. Here, by combining ChIP-seq, RNA-seq and ATAC-seq during mouse pluripotent stem cell differentiation, we defined the dynamic remodelling of the chromatin landscape mediated by Mesp1. We identified different enhancers that are temporally regulated to erase the pluripotent state and specify the pools of CPs that mediate heart development. We identified Zic2 and Zic3 as essential cofactors that act with Mesp1 to regulate its transcription-factor activity at key mesodermal enhancers, thereby regulating the chromatin remodelling and gene expression associated with the specification of the different populations of CPs in vivo. Our study identifies the dynamics of the chromatin landscape and enhancer remodelling associated with temporal patterning of early mesodermal cells into the distinct populations of CPs that mediate heart development.
Keywords
Animals, Basic Helix-Loop-Helix Transcription Factors, Cell Differentiation, Chromatin, Enhancer Elements, Genetic, Gene Expression Regulation, Developmental, Heart, Homeodomain Proteins, Mammals, Mesoderm, Mice, Transcription Factors
Sponsorship
Wellcome Trust (203151/Z/16/Z)
Medical Research Council (MC_PC_17230)
Identifiers
External DOI: https://doi.org/10.1038/s41556-022-00947-3
This record's URL: https://www.repository.cam.ac.uk/handle/1810/338756
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