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40mg · Research Grade

MOTS-C

Mitochondrial · Longevity · Metabolic Regulation

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Overview

What Is MOTS-C?

MOTS-C (mitochondrial open reading frame of the 12S rRNA-c) is a 16-amino acid peptide encoded within the mitochondrial genome — specifically the 12S ribosomal RNA gene. Discovered in 2015 by Lee et al. at the University of Southern California, it represents a new class of mitochondria-derived peptides (MDPs) with systemic signalling functions.

Unlike most peptides encoded in nuclear DNA, MOTS-C originates from the mitochondrial genome, placing it at the intersection of mitochondrial biology and systemic metabolic regulation. Circulating levels of MOTS-C decline with age, drawing interest from longevity researchers.

Mechanism of Action

How It Works

MOTS-C translocates from mitochondria to the nucleus in response to metabolic stress, where it regulates gene expression related to glucose utilisation, fatty acid oxidation, and antioxidant defence. It activates AMPK (AMP-activated protein kinase) — a master regulator of cellular energy homeostasis — and modulates the folate-methionine cycle to influence metabolic flexibility.

Research Areas

Key Research Findings

Insulin Sensitivity

Animal studies demonstrate MOTS-C administration improves insulin sensitivity and glucose uptake in skeletal muscle via AMPK activation and GLUT4 translocation — pathways relevant to type 2 diabetes and metabolic syndrome research.

Exercise Performance

Research in aged mice showed MOTS-C administration enhanced physical capacity and muscle strength, partly by mimicking transcriptional adaptations associated with aerobic exercise training. This has drawn interest in the context of age-related sarcopenia.

Longevity Correlation

Epidemiological analysis has identified MOTS-C genetic variants associated with longevity in Japanese centenarian cohorts, suggesting the peptide plays a functional role in healthy ageing beyond its acute metabolic effects.

Anti-Inflammatory Effects

MOTS-C suppresses pro-inflammatory cytokines including TNF-α and IL-6 in macrophage models, and has shown protective effects in sepsis models — positioning it as a subject of interest in mitochondrial immunology research.

Research-Grade MOTS-C

Pharmaceutical-grade formulation. Order via WhatsApp or Telegram.

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For research purposes only. This page does not constitute medical advice. Consult a qualified healthcare professional before use. Clinician review required where mandated by law.

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