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ResearchMOTS-C
MOTS-C

MOTS-C Research Overview

Mitochondrial-derived peptide and metabolic signalling research

Research Information & Evidence Summary

At a glance
  • Mitochondrial-derived signalling peptide
  • Encoded within mitochondrial 12S rRNA
  • Studied in skeletal-muscle and metabolic-stress pathways
  • Exercise can alter endogenous MOTS-C concentrations in humans
  • Intervention evidence remains predominantly preclinical
RResearch use onlyNot for human or veterinary use
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Research reminder

For laboratory and research use only. This material is provided for research information and is not medical advice, a dosing recommendation, or guidance for human or veterinary use.

Overview

MOTS-C is a mitochondrial-derived peptide encoded within mitochondrial 12S rRNA. It has been studied as part of a broader class of mitochondrial-derived peptides that may act as signalling molecules between mitochondria, cells and tissues.

Experimental work has focused on metabolic homeostasis, skeletal muscle, stress-response signalling, insulin sensitivity, ageing and exercise biology. Human observational and exercise-response data exist, but much of the intervention evidence remains preclinical and controlled therapeutic evidence in humans is limited.

Mechanisms

How the research fits together

MOTS-C is studied as a mitochondrial-to-nuclear and inter-tissue signalling molecule. Research has linked it with cellular metabolic adaptation, AMPK-related pathways, glucose utilisation and stress responses.

Exercise studies suggest endogenous mitochondrial-derived peptides, including MOTS-C, can respond to acute exercise. Animal experiments have reported exercise-like metabolic adaptations after MOTS-C treatment, but these findings should not be interpreted as established human therapeutic effects.

Evidence

Research evidence

Study / sourceFindingEvidence level
Merry et al., 2021 reviewHuman exercise studies show acute exercise can increase MOTS-C in skeletal muscle/plasma; chronic training findings are inconsistentHuman observational + review
Lee et al., 2016 reviewSummarised early evidence linking MOTS-C to skeletal-muscle glucose metabolism and metabolic signallingMechanistic / preclinical review
Systematic review, 2026Exercise-associated mitochondrial-derived peptide literature remains limited and heterogeneous; further controlled studies requiredSystematic review
Comparison

Research comparison

FeatureThis researchAlternative
FeatureMOTS-CEvidence context
OriginMitochondrial-derived peptideEndogenous signalling biology
Research focusMetabolism, muscle, stress and exerciseStrong mechanistic interest
Therapeutic evidenceNot establishedPredominantly preclinical / exploratory human research
Safety & limitations

Research considerations

  • Human therapeutic safety and efficacy are not established
  • Endogenous biology does not establish the safety of exogenous research material
  • Exercise-associated observational changes are not proof of treatment benefit
  • Research remains mechanistic and exploratory in many areas
  • For laboratory and research use only