MOTS-c Studies Database

Key MOTS-c publications, organized by evidence type. The first-listed observation is a summary, not a conclusion.

Last reviewed and updated:

Study table

StudyYearEvidence typeQuestionObservationLimitationSource
The mitochondrial-derived peptide MOTS-c promotes metabolic homeostasis and reduces obesity and insulin resistance [1]2015Animal / cellularMetabolic effects of MOTS-c in cells and miceReported effects on insulin sensitivity and diet-induced obesity in mice, with AMPK-associated signaling.Mouse model; results not shown in people.DOI · PubMed
The mitochondrial-encoded peptide MOTS-c translocates to the nucleus to regulate nuclear gene expression in response to metabolic stress [2]2018CellularWhere MOTS-c acts within the cellReported translocation to the nucleus under metabolic stress and effects on gene expression.Cell-culture conditions; in-vivo relevance under study.DOI · PubMed
MOTS-c is an exercise-induced mitochondrial-encoded regulator of age-dependent physical decline and muscle homeostasis [3]2021Human + animalMOTS-c and exercise / age-related declineReported MOTS-c levels changing with exercise in humans and effects on physical performance in mice.Human data are measurements of endogenous MOTS-c; the intervention data are from mice.DOI · PubMed
The mitochondrial-derived peptide MOTS-c: a player in exceptional longevity? [4]2015Human (genetic)A MOTS-c gene variant and longevityReported a genetic variant association in a Japanese cohort.Association only; cannot show cause.DOI · PubMed
Mitochondrial-derived peptides in energy metabolism [6]2020ReviewMitochondrial-derived peptides in energy metabolismSummarizes the field.Secondary source.DOI · PubMed

Methodology

Entries are drawn from PubMed-indexed literature and summarized conservatively. This is a selected list, not an exhaustive one. See the editorial policy and the full bibliography. Search ClinicalTrials.gov for registered MOTS-c studies.