The thymus regulates skeletal muscle regeneration by directly promoting satellite cell expansion

J Biol Chem. 2022 Jan;298(1):101516. doi: 10.1016/j.jbc.2021.101516. Epub 2021 Dec 20.

Abstract

The thymus is the central immune organ, but it is known to progressively degenerate with age. As thymus degeneration is paralleled by the wasting of aging skeletal muscle, we speculated that the thymus may play a role in muscle wasting. Here, using thymectomized mice, we show that the thymus is necessary for skeletal muscle regeneration, a process tightly associated with muscle aging. Compared to control mice, the thymectomized mice displayed comparable growth of muscle mass, but decreased muscle regeneration in response to injury, as evidenced by small and sparse regenerative myofibers along with inhibited expression of regeneration-associated genes myh3, myod, and myogenin. Using paired box 7 (Pax7)-immunofluorescence staining and 5-Bromo-2'-deoxyuridine-incorporation assay, we determined that the decreased regeneration capacity was caused by a limited satellite cell pool. Interestingly, the conditioned culture medium of isolated thymocytes had a potent capacity to directly stimulate satellite cell expansion in vitro. These expanded cells were enriched in subpopulations of quiescent satellite cells (Pax7highMyoDlowEdUpos) and activated satellite cells (Pax7highMyoDhighEdUpos), which were efficiently incorporated into the regenerative myofibers. We thus propose that the thymus plays an essential role in muscle regeneration by directly promoting satellite cell expansion and may function profoundly in the muscle aging process.

Keywords: conditioned medium; proliferation; satellite cells; skeletal muscle regeneration; thymus.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cell Differentiation
  • Cell Proliferation
  • Mice
  • Muscle Development / physiology
  • Muscle, Skeletal* / growth & development
  • Muscle, Skeletal* / metabolism
  • MyoD Protein / genetics
  • MyoD Protein / metabolism
  • PAX7 Transcription Factor / genetics
  • PAX7 Transcription Factor / metabolism
  • Regeneration* / physiology
  • Satellite Cells, Skeletal Muscle* / cytology
  • Satellite Cells, Skeletal Muscle* / metabolism
  • Thymus Gland* / metabolism
  • Wound Healing

Substances

  • MyoD Protein
  • PAX7 Transcription Factor
  • Pax7 protein, mouse