Cell Reports
Volume 39, Issue 11, 14 June 2022, 110939
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Article
Satellite cell-specific deletion of Cipc alleviates myopathy in mdx mice

https://doi.org/10.1016/j.celrep.2022.110939Get rights and content
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Highlights

  • CIPC is up-regulated during myoblast differentiation

  • Specific deletion of Cipc in satellite cells alleviates myopathy in mdx mice

  • Cipc deficiency leads to activation of SP1 to trigger the transcription of Pax7

  • Loss of Cipc in satellite cells promotes muscle regeneration

Summary

Skeletal muscle regeneration relies on satellite cells that can proliferate, differentiate, and form new myofibers upon injury. Emerging evidence suggests that misregulation of satellite cell fate and function influences the severity of Duchenne muscular dystrophy (DMD). The transcription factor Pax7 determines the myogenic identity and maintenance of the pool of satellite cells. The circadian clock regulates satellite cell proliferation and self-renewal. Here, we show that the CLOCK-interacting protein Circadian (CIPC) a negative-feedback regulator of the circadian clock, is up-regulated during myoblast differentiation. Specific deletion of Cipc in satellite cells alleviates myopathy, improves muscle function, and reduces fibrosis in mdx mice. Cipc deficiency leads to activation of the ERK1/2 and JNK1/2 signaling pathways, which activates the transcription factor SP1 to trigger the transcription of Pax7 and MyoD. Therefore, CIPC is a negative regulator of satellite cell function, and loss of Cipc in satellite cells promotes muscle regeneration.

Keywords

DMD
satellite cell
regeneration
muscle repair
circadian clock
CIPC
muscular dystrophy
mdx
Pax7
MyoD

Research topic(s)

CP: Molecular biology

Data and code availability

RNA-seq data have been deposited at GEO and are publicly available as of the date of publication. Accession numbers are listed in the Key resources table. Original gel blot images have been deposited at Mendeley and are publicly available as of the date of publication. The DOI is listed in the Key resources table.

This paper does not report original code.

Any additional information required to reanalyze the data reported in this paper is available from the lead contact upon request.

Cited by (0)

5

These authors contributed equally

6

Lead contact