Home LiteratureArticle Details
PMID: 37468485 Published · epublish English

Opposing gene regulatory programs governing myofiber development and maturation revealed at single nucleus resolution.

Nature communications ·Vol. 14 ·No. 1 ·2023-00-19

Dos Santos M, Shah AM, Zhang Y, Bezprozvannaya S, Chen K, Xu L, Lin W, McAnally JR, Bassel-Duby R, Liu N, Olson EN

Abstract

Skeletal muscle fibers express distinct gene programs during development and maturation, but the underlying gene regulatory networks that confer stage-specific myofiber properties remain unknown. To decipher these distinctive gene programs and how they respond to neural activity, we generated a combined multi-omic single-nucleus RNA-seq and ATAC-seq atlas of mouse skeletal muscle development at multiple stages of embryonic, fetal, and postnatal life. We found that Myogenin, Klf5, and Tead4 form a transcriptional complex that synergistically activates the expression of muscle genes in developing myofibers. During myofiber maturation, the transcription factor Maf acts as a transcriptional switch to activate the mature fast muscle gene program. In skeletal muscles of mutant mice lacking voltage-gated L-type Ca2+ channels (Cav1.1), Maf expression and myofiber maturation are impaired. These findings provide a transcriptional atlas of muscle development and reveal genetic links between myofiber formation, maturation, and contraction.

MeSH 主题词
Mice Animals Muscle Fibers, Skeletal/metabolism Muscle, Skeletal/metabolism Gene Expression Regulation Transcription Factors/metabolism Cell Differentiation
Article Info
Journal
Nature communications
Abbr.
Nat Commun
ISSN
2041-1723
Corresponding email
Published
2023-00-19
Language
English
Country/Region
England
NLM ID
101528555
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