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

Author:

Dos Santos Matthieu,Shah Akansha M.,Zhang YichiORCID,Bezprozvannaya Svetlana,Chen KenianORCID,Xu LinORCID,Lin Weichun,McAnally John R.,Bassel-Duby RhondaORCID,Liu NingORCID,Olson Eric N.ORCID

Abstract

AbstractSkeletal 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.

Funder

Foundation for the National Institutes of Health

Welch Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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