MOTS-c Research: Mitochondrial Peptide & Signalling Science

MOTS-c research overview showing mitochondrial-derived peptide structure, sequence and laboratory research
AXOPEPTIDES RESEARCH LIBRARY

MOTS-c: Mitochondrial-Derived Peptide Structure, Mitonuclear Signalling & Laboratory Research Overview

MOTS-c is a 16-amino-acid mitochondrial-derived peptide encoded within the mitochondrial 12S rRNA region. This scientific overview examines its sequence, mitochondrial genomic origin, cellular localisation, stress-associated nuclear translocation, AMPK-linked research, mitonuclear signalling and analytical characterisation.

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Scientific & Laboratory Research Information

This article is intended for scientific and educational information only. It contains no dosing, reconstitution, administration, injection, treatment, supplementation or personal-use instructions.

PEPTIDE MOTS-c
LENGTH 16 amino acids
GENOMIC REGION MT-RNR1 / 12S rRNA
MOLECULAR WEIGHT ≈ 2174.6 g/mol
MOLECULAR OVERVIEW

What Is MOTS-c?

MOTS-c is a short peptide containing 16 amino-acid residues.

It belongs to a research category commonly described as mitochondrial-derived peptides, or MDPs. Unlike conventional proteins encoded by nuclear DNA, the genetic sequence associated with MOTS-c is located within mitochondrial DNA.

The peptide was reported in 2015 during investigation of previously unrecognised short open reading frames within the mitochondrial genome.

MITOCHONDRIAL-DERIVED PEPTIDE MOTS-c 16 amino acids • encoded within the mitochondrial 12S rRNA region

This discovery contributed to a broader research field examining whether mitochondrial DNA contains short coding regions capable of generating biologically active peptide signals.

RESEARCH TERMINOLOGY

What Does the Name MOTS-c Mean?

MOTS-c is derived from the phrase:

M Mitochondrial
O Open
R Reading
F Frame
12S 12S rRNA
c Type-c

In scientific literature, the expanded terminology is commonly written as mitochondrial open reading frame of the 12S rRNA type-c.

MITOCHONDRIAL GENETICS

What Is a Mitochondrial-Derived Peptide?

Mitochondria possess their own genome, separate from the chromosomes located within the cell nucleus.

Historically, mitochondrial DNA was mainly discussed in relation to established mitochondrial proteins, ribosomal RNAs and transfer RNAs.

Research into mitochondrial-derived peptides expanded this view by identifying short open reading frames located within regions previously known primarily for mitochondrial RNA functions.

01 Mitochondrial DNA

Contains a compact genetic system distinct from nuclear chromosomes.

02 Short Open Reading Frames

Small coding regions can potentially specify short peptide sequences.

03 MDP Research

Investigates peptide signals encoded within mitochondrial genomic regions.

Important terminology

Saying that MOTS-c is mitochondrial-DNA encoded describes its genetic origin. Questions concerning exactly where and how mitochondrial-derived peptides are translated remain an active area of molecular research.

GENOMIC ORIGIN

MOTS-c & the Mitochondrial 12S rRNA Region

MOTS-c is encoded within the mitochondrial gene region known as MT-RNR1.

MT-RNR1 is conventionally associated with mitochondrial 12S ribosomal RNA.

The MOTS-c coding sequence therefore illustrates an important concept in modern mitochondrial genetics: a genomic region recognised for one function may contain an overlapping short open reading frame relevant to peptide research.

MITOCHONDRIAL DNA mtDNA
GENE REGION MT-RNR1
12S rRNA REGION Short ORF
PEPTIDE MOTS-c

Simplified genomic relationship for educational purposes.

AMINO-ACID SEQUENCE

What Is the Amino-Acid Sequence of MOTS-c?

The human MOTS-c sequence reported in scientific literature is:

MRWQEMGYIFYPRKLR

In three-letter amino-acid notation:

Met – Arg – Trp – Gln – Glu – Met – Gly – Tyr – Ile – Phe – Tyr – Pro – Arg – Lys – Leu – Arg
01 M Met
02 R Arg
03 W Trp
04 Q Gln
05 E Glu
06 M Met
07 G Gly
08 Y Tyr
09 I Ile
10 F Phe
11 Y Tyr
12 P Pro
13 R Arg
14 K Lys
15 L Leu
16 R Arg
MOLECULAR CHARACTERISTICS

MOTS-c Molecular Information

Standard molecular identifiers provide a reference for laboratory characterisation and database comparison.

Common name MOTS-c
Peptide length 16 amino acids
Sequence MRWQEMGYIFYPRKLR
Molecular formula C101H152N28O22S2
Molecular weight 2174.6 g/mol
PubChem CID 146675088
Genomic region MT-RNR1 / mitochondrial 12S rRNA
Research classification Mitochondrial-derived peptide

Molecular formula and calculated mass provide useful reference information but should not be treated as substitutes for analytical confirmation of an experimental sample.

MITONUCLEAR BIOLOGY

MOTS-c & Mitonuclear Communication

A major area of MOTS-c research concerns communication between mitochondria and the nucleus.

These two cellular compartments each contain genetic material, yet normal cellular function requires extensive coordination between them.

Research published in 2018 reported that MOTS-c could relocate to the nucleus in response to defined metabolic-stress conditions in cellular models.

MITOCHONDRIAL GENOME MOTS-c
CELLULAR STRESS MODEL Dynamic localisation
NUCLEUS Gene-regulation research

Simplified representation of a cellular research concept rather than a complete signalling pathway.

CELLULAR LOCALISATION

Stress-Associated Nuclear Translocation Research

The intracellular location of a peptide can provide important clues about the molecular processes in which it participates.

In cellular experiments, Kim and colleagues examined MOTS-c localisation following several defined stress conditions, including glucose restriction and other laboratory stress models.

Their results indicated dynamic movement of MOTS-c into the nucleus under those experimental conditions.

Subcellular Fractionation

Laboratory fractions were used to examine the relative localisation of MOTS-c within cellular compartments.

Immunofluorescence

Fluorescence microscopy was used to visualise peptide localisation within experimental cells.

Stress Models

Defined cellular stresses were used to investigate whether localisation patterns changed.

Nuclear Investigation

Researchers examined relationships between nuclear MOTS-c and gene-regulatory processes.

CELLULAR SIGNALLING

MOTS-c & AMPK-Associated Research

AMP-activated protein kinase, commonly abbreviated AMPK, is an extensively studied cellular signalling enzyme involved in sensing changes in cellular energetic state.

The original MOTS-c discovery work reported AMPK-associated signalling in experimental systems.

The 2018 nuclear-translocation study further reported that stress-associated MOTS-c movement into the nucleus was AMPK-dependent under the conditions investigated.

EXPERIMENTAL CONDITION Cellular stress
SIGNALLING RESEARCH AMPK
OBSERVATION Nuclear localisation
Mechanistic findings require context.

AMPK involvement reported in controlled experiments should be described as an experimental signalling observation rather than being converted into claims about personal outcomes.

STRESS-RESPONSE RESEARCH

MOTS-c, NRF2 & Nuclear Gene-Expression Research

The 2018 study also investigated whether nuclear MOTS-c was associated with stress-responsive transcriptional machinery.

Experiments reported interactions involving NRF2, a transcription factor associated with antioxidant-response-element regulation.

The researchers also investigated MOTS-c-associated chromatin interactions and changes in gene expression under defined stress conditions.

01 Nuclear Localisation

MOTS-c localisation was examined under controlled stress conditions.

02 NRF2 Interaction

Protein-interaction experiments investigated association with stress-responsive transcription factors.

03 Gene Expression

RNA-based analyses examined changes in nuclear gene expression within the experimental system.

EVIDENCE INTERPRETATION

How Is MOTS-c Studied Experimentally?

MOTS-c research spans several experimental levels.

01 Genomic mtDNA & short ORFs
02 Molecular Sequence & peptide identity
03 Cellular Localisation & signalling
04 Preclinical Controlled biological models

Evidence generated at one level should not automatically be treated as proof at another level.

For example:

Demonstrating nuclear localisation in cultured cells establishes a cellular observation under those experimental conditions. It does not by itself establish broader outcomes outside that model.

ANALYTICAL SCIENCE

Laboratory Characterisation of MOTS-c

Synthetic MOTS-c research material can be examined using complementary analytical methods.

01 Peptide Sequence

The expected 16-residue sequence provides a primary molecular reference.

02 Chromatography

HPLC can separate detected sample components under specified analytical conditions.

03 Mass Spectrometry

Molecular mass-related data can contribute to assessment of peptide identity.

04 Database Comparison

Analytical results can be compared with established sequence, formula and mass references.

CHROMATOGRAPHY

HPLC in MOTS-c Research

High-performance liquid chromatography separates compounds according to their behaviour within a selected chromatographic system.

For peptide materials, chromatographic data can provide information about relative sample composition and detected components under the specific method used.

Simplified chromatogram illustration — not laboratory data.
Chromatographic purity is method-dependent.

A purity percentage should always be interpreted in the context of the analytical method that generated it.

MASS SPECTROMETRY

Mass Spectrometry & MOTS-c Identity

Mass spectrometry measures ions according to their mass-to-charge ratio.

For a 16-residue peptide such as MOTS-c, mass-spectrometric evidence can be compared with expected molecular characteristics and, where appropriate, peptide-fragment information.

REFERENCE MRWQEMGYIFYPRKLR
ANALYSIS Mass spectrometry
DATA m/z information
QUESTION Identity evidence
ANALYTICAL INTERPRETATION

Purity, Identity & Quantity Are Separate Questions

PURITY

Sample composition

Describes the relative chromatographic composition detected by a particular method.

IDENTITY

Which peptide?

Addresses whether analytical evidence corresponds with the expected MOTS-c molecule.

QUANTITY

How much material?

Requires an appropriate quantitative analytical measurement.

A high HPLC percentage does not prove all three.

Sequence, molecular identity and absolute quantity require appropriate evidence beyond a chromatographic purity value.

SCIENTIFIC CAUTION

Important Limitations When Reading MOTS-c Research

  • MOTS-c is a relatively recently identified mitochondrial-derived peptide compared with many classical mitochondrial proteins.
  • Its mitochondrial genomic origin should not be confused with complete certainty about every step involved in peptide production.
  • Cellular localisation experiments answer different questions from whole-organism research.
  • AMPK-associated findings should remain linked to the experimental systems in which they were observed.
  • Nuclear-translocation research does not establish every possible downstream biological consequence.
  • Results from cultured cells should remain identified as cellular evidence.
  • Results from animal experiments should remain identified as preclinical evidence.
  • Molecular mechanism should not be converted into unsupported consumer claims.
  • HPLC purity alone does not confirm complete molecular identity.
UNITED KINGDOM

MOTS-c in the UK Research Context

Scientific discussion of a research peptide should remain clearly separated from medicinal or personal-use presentation.

Current MHRA guidance explains that a product can fall within medicines regulation according to factors including explicit and implicit claims, pharmacological, metabolic or immunological properties, intended purpose and the manner in which it is presented.

The MHRA also considers presentation through labelling, packaging, promotional literature, advertisements, websites, social media and customer reviews.

Research-only wording should therefore remain consistent with surrounding site content rather than being contradicted by consumer-use instructions or medicinal claims.

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SCIENTIFIC FAQ

Frequently Asked Research Questions About MOTS-c

What is MOTS-c?

MOTS-c is a 16-amino-acid mitochondrial-derived peptide encoded within the mitochondrial 12S rRNA genomic region.

What does MOTS-c stand for?

The name refers to mitochondrial open reading frame of the 12S rRNA type-c.

Is MOTS-c a peptide?

Yes. MOTS-c is a short peptide composed of 16 amino-acid residues.

What is the MOTS-c amino-acid sequence?

The human sequence reported in scientific literature is MRWQEMGYIFYPRKLR.

How many amino acids are in MOTS-c?

MOTS-c contains 16 amino-acid residues.

Where is MOTS-c encoded?

Its coding region is located within MT-RNR1, the mitochondrial genomic region associated with 12S ribosomal RNA.

What is a mitochondrial-derived peptide?

It is a research term for a short peptide associated with a coding sequence located within mitochondrial DNA.

What is the molecular formula of MOTS-c?

PubChem lists the formula as C101H152N28O22S2.

What is the molecular weight of MOTS-c?

PubChem lists a molecular weight of approximately 2174.6 g/mol.

What is the PubChem CID for MOTS-c?

PubChem identifies MOTS-c as CID 146675088.

Can MOTS-c localise to the nucleus in experimental cells?

Published cellular research reported stress-associated nuclear translocation of MOTS-c under defined experimental conditions.

What is the connection between MOTS-c and AMPK research?

Experimental studies have investigated AMPK-associated signalling, including evidence that stress-associated nuclear translocation can be AMPK-dependent in cellular models.

How can MOTS-c be analysed in a laboratory?

Depending on the analytical question, characterisation can include chromatography, mass spectrometry and comparison with expected sequence and molecular properties.

Does high HPLC purity prove MOTS-c identity?

No. Chromatographic purity and molecular identity are separate analytical questions.

SCIENTIFIC & REGULATORY SOURCES

References & Further Reading

  1. Lee C, et al. Cell Metabolism. 2015.

    Original research describing the mitochondrial-derived peptide MOTS-c and its mitochondrial genomic origin.

    View PubMed
  2. Kim KH, et al. Cell Metabolism. 2018.

    The mitochondrial-encoded peptide MOTS-c translocates to the nucleus to regulate nuclear gene expression in response to metabolic stress.

    View PubMed
  3. PubChem — MOTS-c

    Chemical structure, molecular formula, molecular weight and compound information for MOTS-c, CID 146675088.

    View PubChem
  4. NCBI Protein — mitochondrial-derived peptide MOTS-c

    Database information relating to the human mitochondrial-derived MOTS-c peptide.

    View database record
  5. MHRA — Borderline Products Guidance

    Current UK guidance concerning claims, pharmacological properties, intended purpose and product presentation.

    View GOV.UK guidance
Scientific & Laboratory Research Information

This page is intended for scientific, laboratory and educational information. It provides no dosing, reconstitution, administration, injection, treatment, supplementation or personal-use guidance.