MOT-c 10mg
5-Amino-1mq 5mg

£53.99 £47.99 Spare 11%
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Premium Grade | UK Supply | Research Peptide | COA Certified | >99% Purity | Worldwide Delivery

(Hexadecapeptide, 16 amino acids)
(Small molecule, not a peptide)


Why MOTS-c and 5-Amino-1MQ Make a Strong Research Pairing

MOTS-c and 5-Amino-1MQ form a relevant research pairing because both compounds are investigated in connection with cellular energy regulation and metabolic pathway activity, while representing two different types of research material. MOTS-c is a mitochondrial-derived peptide, whereas 5-Amino-1MQ is a small-molecule quinoline derivative rather than a peptide.

MOTS-c research commonly focuses on mitochondria-to-nucleus communication, cellular energy sensing, metabolic stress responses and AMPK-associated signalling. It provides researchers with a model for examining how a mitochondrially encoded peptide may influence wider signalling networks involved in substrate utilisation, cellular adaptation and energy homeostasis.

5-Amino-1MQ is principally studied as an inhibitor of nicotinamide N-methyltransferase, commonly abbreviated to NNMT. Laboratory investigation considers how NNMT activity relates to nicotinamide metabolism, methylation processes, intracellular cofactor balance and broader metabolic regulation.

Examining MOTS-c and 5-Amino-1MQ within the same research programme allows researchers to compare mitochondrial-derived signalling with small-molecule enzyme inhibition. This pairing may support experiments measuring AMPK-associated activity, NNMT activity, nicotinamide-related metabolites, mitochondrial outputs, metabolic enzyme behaviour and cellular stress markers.

The compounds can be evaluated separately before their results are compared across matched experimental conditions. This helps distinguish effects associated with mitochondrial peptide signalling from those connected with NNMT pathway regulation.

Together, MOTS-c and 5-Amino-1MQ provide a broader framework for studying how mitochondrial communication, enzyme activity, methylation-associated pathways and cellular energy sensing may intersect. Their different but related research profiles make them a strong pairing for structured laboratory investigation into metabolic regulation and cellular energy pathways.


Explore Each Research Compound
Continue examining each research compound separately and compare their respective mitochondrial and metabolic signalling pathways.

View MOTS-c 10mg Research Compound ⟶
View 5-Amino-1MQ 5mg Research Compound ⟶


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Research Preparation and Guidance

Access relevant BioPlex collections, preparation tools and guidance for structured laboratory research.

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Explore Related Research Articles

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Disclaimer

For research purposes only, Not for human consumption

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