A novel mitochondrial micropeptide MPM enhances mitochondrial respiratory activity and promotes myogenic

Yi-Fang Lin1, Man-Huan Xiao1, Hua-Xing Chen1

  • 1MOE Key Laboratory of Gene Function and Regulation, School of Life Sciences, Collaborative Innovation Center for Cancer Medicine, Sun Yat-sen University, Xin Gang Xi Road 135, 510275, Guangzhou, China.

Cell Death & Disease
|July 13, 2019
PubMed

Insights

A novel muscle micropeptide, micropeptide in mitochondria (MPM), enhances muscle cell differentiation and growth by boosting mitochondrial function. This discovery offers a potential therapeutic target for muscular dystrophy.

Area of Science:

  • Muscle biology
  • Mitochondrial function
  • Micropeptide research

Background:

  • Micropeptides are small molecules with largely unknown functions.
  • Muscle-specific micropeptides are of interest for understanding myogenesis.

Purpose of the Study:

  • To identify and characterize a novel muscle-enriched micropeptide.
  • To investigate the role of this micropeptide in muscle differentiation, development, and disease.

Main Methods:

  • Identification and localization of a novel micropeptide (MPM) in mitochondria.
  • In vitro studies using C2C12 myoblasts (differentiation, gene silencing, overexpression).
  • In vivo studies in MPM knockout mice and after cardiotoxin-induced injury.

Main Results:

  • MPM is upregulated during myogenesis and muscle regeneration, and downregulated in muscular dystrophy.
  • MPM silencing inhibits myoblast differentiation; MPM overexpression enhances it.
  • MPM knockout mice show impaired muscle fiber growth, performance, and regeneration.
  • MPM enhances mitochondrial oxygen consumption and ATP production, potentially via PGC-1α.

Conclusions:

  • MPM promotes myogenic differentiation and muscle fiber growth by enhancing mitochondrial activity.
  • MPM is crucial for muscle development and regeneration.
  • MPM represents a potential therapeutic target for muscular dystrophy.

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