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Single-cell Chromatin Profiling Reveals Genetic Programs Activating Proregenerative States in Nonmyocyte Cells

Overview
Journal Sci Adv
Specialties Biology
Science
Date 2024 Feb 21
PMID 38381829
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Abstract

Cardiac regeneration requires coordinated participation of multiple cell types whereby their communications result in transient activation of proregenerative cell states. Although the molecular characteristics and lineage origins of these activated cell states and their contribution to cardiac regeneration have been studied, the extracellular signaling and the intrinsic genetic program underlying the activation of the transient functional cell states remain largely unexplored. In this study, we delineated the chromatin landscapes of the noncardiomyocytes (nonCMs) of the regenerating heart at the single-cell level and inferred the cis-regulatory architectures and trans-acting factors that control cell type-specific gene expression programs. Moreover, further motif analysis and cell-specific genetic manipulations suggest that the macrophage-derived inflammatory signal tumor necrosis factor-α, acting via its downstream transcription factor complex activator protein-1, functions cooperatively with discrete transcription regulators to activate respective nonCM cell types critical for cardiac regeneration. Thus, our study defines the regulatory architectures and intercellular communication principles in zebrafish heart regeneration.

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References
1.
Kettleborough R, Busch-Nentwich E, Harvey S, Dooley C, de Bruijn E, van Eeden F . A systematic genome-wide analysis of zebrafish protein-coding gene function. Nature. 2013; 496(7446):494-7. PMC: 3743023. DOI: 10.1038/nature11992. View

2.
Fang R, Preissl S, Li Y, Hou X, Lucero J, Wang X . Comprehensive analysis of single cell ATAC-seq data with SnapATAC. Nat Commun. 2021; 12(1):1337. PMC: 7910485. DOI: 10.1038/s41467-021-21583-9. View

3.
Buenrostro J, Wu B, Litzenburger U, Ruff D, Gonzales M, Snyder M . Single-cell chromatin accessibility reveals principles of regulatory variation. Nature. 2015; 523(7561):486-90. PMC: 4685948. DOI: 10.1038/nature14590. View

4.
Kikuchi K, Holdway J, Werdich A, Anderson R, Fang Y, Egnaczyk G . Primary contribution to zebrafish heart regeneration by gata4(+) cardiomyocytes. Nature. 2010; 464(7288):601-5. PMC: 3040215. DOI: 10.1038/nature08804. View

5.
Bevan L, Lim Z, Venkatesh B, Riley P, Martin P, Richardson R . Specific macrophage populations promote both cardiac scar deposition and subsequent resolution in adult zebrafish. Cardiovasc Res. 2019; 116(7):1357-1371. PMC: 7243279. DOI: 10.1093/cvr/cvz221. View