Mitochondrial-Derived Peptide MOTS-c Suppresses Ovarian Cancer Progression by Attenuating USP7-Mediated LARS1 Deubiquitination
Key finding
Demonstrated that MOTS-c can suppress ovarian cancer progression through a novel molecular mechanism, expanding the peptide's therapeutic potential beyond metabolic health into oncology.
Key takeaways
- MOTS-c showed the ability to slow down ovarian cancer growth in laboratory studies.
- It works through a specific molecular pathway that disrupts cancer cell survival.
- This adds anti-cancer potential to the already impressive list of MOTS-c benefits.
Study breakdown
While MOTS-c is best known for its metabolic benefits, emerging research is revealing that this mitochondrial-derived peptide may also have significant anti-cancer properties. This study by Yin, Li, Ma, and colleagues, published in Advanced Science, investigated MOTS-c's effects on ovarian cancer progression.
The researchers explored the molecular mechanisms by which MOTS-c influences cancer cell behavior, focusing on the USP7-LARS1 signaling axis. They used both cell-based assays and animal models to determine whether MOTS-c treatment could suppress tumor growth and, if so, through what specific pathway.
The results demonstrated that MOTS-c effectively suppressed ovarian cancer progression by attenuating USP7-mediated deubiquitination of LARS1. This disruption of the USP7-LARS1 axis impaired cancer cell proliferation and survival, leading to significant tumor suppression in preclinical models.
This discovery adds an important new dimension to MOTS-c's therapeutic profile. The finding that a metabolic peptide can also influence cancer biology through specific molecular mechanisms suggests that the benefits of MOTS-c supplementation may extend far beyond metabolic improvement. For patients and clinicians, this research highlights the increasingly broad potential of mitochondrial-derived peptides as multi-benefit therapeutic agents.
Read the full study on PubMed for complete methodology and data.
View full study on PubMedPMID: 39321430
More MOTS-c research
Mitochondrial-Encoded Peptide MOTS-c, Diabetes, and Aging-Related Diseases
Kong BS, Lee C, Cho YM · Diabetes & metabolism journal
MOTS-c: A promising mitochondrial-derived peptide for therapeutic exploitation
Zheng Y, Wei Z, Wang T · Frontiers in endocrinology
The mitochondrial-derived peptide MOTS-c promotes metabolic homeostasis and reduces obesity and insulin resistance
Lee C, Zeng J, Drew BG, et al. · Cell metabolism
The mitochondrial-derived peptide MOTS-c relieves hyperglycemia and insulin resistance in gestational diabetes mellitus
Yin Y, Pan Y, He J, et al. · Pharmacological research
The Mitochondrial-Encoded Peptide MOTS-c Translocates to the Nucleus to Regulate Nuclear Gene Expression in Response to Metabolic Stress
Kim KH, Son JM, Benayoun BA, et al. · Cell metabolism
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