Mitochondrial-derived peptides
Research on mitochondrial-derived peptides, including MOTS-c and humanin.
Explore the papers.
18 publicationsMOTS-c partially protects against skeletal muscle deterioration in C26 cachexia.
MOTS-c: How a secreted mitochondrial microprotein may become a potential treatment for inflammatory lung diseases.
Mitochondrial-encoded peptide MOTS-c prevents pancreatic islet cell senescence to delay diabetes.
Diagnostic relevance of Humanin, GAS5 and miR-21/miR-103 in prostate disease risk stratification.
Mitochondria-derived peptide MOTS-c restores mitochondrial respiration in type 2 diabetic heart.
MOTS-c modulates skeletal muscle function by directly binding and activating CK2.
Mitochondrial-Derived Peptide MOTS-c Suppresses Ovarian Cancer Progression by Attenuating USP7-Mediated LARS1 Deubiquitination.
Mitochondria-encoded peptide MOTS-c participates in plasma membrane repair by facilitating the translocation of TRIM72 to membrane.
Mitochondrial-derived microprotein MOTS-c attenuates immobilization-induced skeletal muscle atrophy by suppressing lipid infiltration.
Novel function of MOTS-c in mitochondrial remodelling contributes to its antiviral role during HBV infection.
MOTS-c: A promising mitochondrial-derived peptide for therapeutic exploitation.
Circulating levels of MOTS-c in patients with breast cancer treated with metformin.
Mitochondrial-derived peptides as a novel intervention for obesity and cardiac diseases: bench evidence for potential bedside application.
Humanin derivative, HNG, enhances neurotransmitter release.
MOTS-c promotes muscle differentiation in vitro.
The mitochondrial-derived peptide MOTS-c relieves hyperglycemia and insulin resistance in gestational diabetes mellitus.
Mitochondrial-derived peptides and exercise.
Nuclear transcriptional regulation by mitochondrial-encoded MOTS-c.
