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MOTS-C (Mitochondrial Open Reading frame of the Twelve S rRNA-c) is an endogenous 16-amino-acid peptide encoded within the human mitochondrial genome, specifically in the 12S ribosomal RNA subunit. Identified in 2015 by the Pinchas Cohen team at the University of Southern California, it represents a new class of mitochondria-derived peptides with systemic regulatory function.
Molecular structure:
The discovery of MOTS-C changed the classical understanding of the mitochondrion as a purely energetic organelle, revealing its role as a metabolic signaling node that communicates cellular state to the rest of the organism.
MOTS-C exerts its effects through multiple metabolic signaling pathways:
AMPK Activation:
The peptide directly activates AMPK (AMP-activated protein kinase), the cell's master energy sensor. AMPK activation triggers cascades that favor fatty acid oxidation, improve insulin-independent glucose uptake, and increase mitochondrial biogenesis.
Folate pathway regulation:
Modulates folate metabolism and the methionine cycle, impacting DNA methylation and epigenetic regulation associated with cellular aging.
Nuclear translocation under stress:
Under metabolic stress conditions (fasting, exercise, caloric restriction), MOTS-C translocates from the mitochondria to the nucleus, where it modulates the expression of adaptive genes as an integrated stress response.
Improvement of mitochondrial function:
Increases electron transport chain activity, improves coupling between oxidative phosphorylation and ATP production, and reduces mitochondrial reactive oxygen species (ROS) generation.
Active research lines with MOTS-C documented in the scientific literature:
Reference volumetric data for solution preparation in a laboratory setting:
The 40 mg vial can be reconstituted with 2 to 4 ml of bacteriostatic water. Resulting concentrations by diluent volume:
The U-100 scale is included solely as a laboratory volumetric reference for calculating aliquots from the prepared concentration. Store reconstituted material refrigerated and protect from light.
MOTS-C is an endogenous peptide, and the preclinical literature and first published trials describe a notably clean tolerability profile. In the experimental context, the literature mainly documents:
Given its mechanism of improving insulin sensitivity, the literature notes potential interactions with antidiabetic agents (sulfonylureas, insulin, metformin) as a variable to control for in experimental design. Always handle under appropriate laboratory practice.
Combinations explored in the literature and in experimental designs:
Product intended exclusively for scientific research purposes.
Research material only. This product is intended for scientific research in controlled laboratory settings only. It is not a drug. Not for human or animal use, not for diagnostic or therapeutic use.
All products are sold in powder (lyophilized) form and require reconstitution with a suitable diluent for research purposes only. Laboratory supplies (e.g., syringes, bacteriostatic water, etc.) are not included. Dosage instructions are not provided.
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We are not a pharmacy, nor do we offer, promote, or provide any advice for human or animal consumption.
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