MOTS-c

£23.50

Quantity Price Discount
2 £22.33 5%
3-4 £21.15 10%
5+ £19.98 15%
  • Purity: ≥99% (HPLC)
  • Batch-controlled manufacturing
  • Secure packaging for laboratory handling
  • Storage: Store lyophilised powder frozen for long-term stability.
  • Following preparation in accordance with laboratory protocols, store solutions refrigerated (2–8 °C).
  • Research use only (not for human or veterinary use)
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Key Specifications
  • Purity: ≥99% (HPLC)
  • Batch-controlled manufacturing
  • Secure packaging for laboratory handling
  • Storage: Store lyophilised powder frozen for long-term stability.
  • Following preparation in accordance with laboratory protocols, store solutions refrigerated (2–8 °C).
  • Research use only (not for human or veterinary use)
Description

Cells constantly monitor their energy demands, adjusting metabolic activity in response to changing physiological conditions. MOTS-c has become a recognised laboratory research peptide within this field, appearing in studies exploring mitochondrial signalling, cellular metabolism and metabolic regulation.

As researchers continue to investigate how mitochondria communicate with the rest of the cell, MOTS-c remains an important subject of laboratory research across multiple areas of molecular biology and bioenergetics.

Key Research Areas

  • Mitochondrial signalling
  • Cellular metabolism
  • Metabolic regulation
  • Cellular bioenergetics

Originally identified as a peptide encoded within mitochondrial DNA, MOTS-c has attracted sustained scientific interest because of its unique role in mitochondrial biology. Unlike most peptides, which are encoded by nuclear DNA, MOTS-c originates from the mitochondrial genome, making it a distinctive subject of laboratory investigation.

Rather than being investigated within a single biological pathway, MOTS-c has featured in experimental studies examining mitochondrial communication, metabolic regulation and intracellular signalling. This multidisciplinary research profile has established it as a recognised laboratory research peptide within contemporary cell biology.

One of the principal reasons MOTS-c remains an important subject of scientific investigation is its association with mitochondrial signalling. Mitochondria do far more than produce cellular energy—they also communicate with the rest of the cell through complex molecular signalling networks that help coordinate normal physiological function.

Understanding these communication pathways continues to be a major objective of modern biomedical research. Experimental studies involving MOTS-c have therefore explored the biological mechanisms associated with mitochondrial signalling and cellular adaptation.

Closely connected to this work is the study of cellular metabolism. Every cell relies upon carefully regulated metabolic pathways to balance energy production, nutrient utilisation and normal physiological activity.

Researchers continue to investigate how these interconnected systems respond to changing cellular demands, with MOTS-c appearing in laboratory studies exploring metabolic communication and bioenergetics.

Scientific interest in MOTS-c also extends to cellular bioenergetics. Understanding how cells generate, distribute and regulate energy remains one of the most important areas of molecular biology, particularly because mitochondrial function influences virtually every tissue within the body.

As a result, MOTS-c continues to feature in experimental research investigating the biological pathways that connect mitochondrial activity with broader cellular physiology.

What distinguishes MOTS-c from many other laboratory research peptides is its unique mitochondrial origin. Rather than being encoded by nuclear DNA like most peptides, it represents an important area of investigation into mitochondrial genetics, intracellular communication and metabolic biology.

This distinctive scientific profile continues to make MOTS-c a recognised laboratory research peptide for scientists seeking to better understand how mitochondria influence cellular function and physiological regulation.

This overview introduces MOTS-c as a laboratory research peptide and highlights the scientific areas in which it continues to be investigated.

Technical Data

Chemical name: MOTS-c (mitochondrial-derived peptide)

Synonyms: MOTS-c

Peptide length: 16 amino acids

Sequence (1-letter): MRWQEMGYIFYPRKLR

Sequence (3-letter): Met-Arg-Trp-Gln-Glu-Met-Gly-Tyr-Ile-Phe-Tyr-Pro-Arg-Lys-Leu-Arg

Molecular formula: C101H152N28O22S2

Molecular weight: 2174.6 g/mol

CAS: See COA (may vary by listing/form)

Form: Lyophilised (freeze-dried) powder

Appearance: White to off-white solid

This product is supplied strictly for laboratory research purposes. It is not intended for human consumption or veterinary use and is not marketed for the diagnosis, treatment, cure, mitigation, or prevention of any disease or medical condition. No directions for personal use are provided or implied. The purchaser is responsible for ensuring compliant handling, storage, and use in accordance with applicable laws and regulations.

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