Metabolite Card

Formula: CH5N (31.0422)
SMILES: CN

Synonyms [en]

methylamine; Methanamine; aminomethane; MeNH2; monomethylamine; Anhydrous Methylamine

Reviewed

Last reviewed on 2024-06-28.

Cite this Page

Methylamine. 数据之源,洞见之始. SMRUCC genomics institute, a synthetic life researcher from China. https://biocad_registry.innovation.ac.cn/s/(-)-arctiin (retrieved 2026-01-03) (CAD Registry RN: BioCAD00000014028). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

Note

Methylamine occurs endogenously from amine catabolism and its tissue levels increase in some pathological conditions, including diabetes. Interestingly, methylamine and ammonia levels are reciprocally controlled by a semicarbazide-sensitive amine oxidase activity that deaminates methylamine to formaldehyde with the production of ammonia and hydrogen peroxide. Methylamine also targets the voltage-operated neuronal potassium channels, probably inducing release of neurotransmitter(s). Semicarbazide-sensitive amine oxidase (SSAO) catalyzes the deamination of primary amines. Such deamination has been shown capable of regulating glucose transport in adipose cells. It has been independently discovered that the primary structure of vascular adhesion protein-1 (VAP-1) is identical to SSAO. Increased serum SSAO activities have been found in patients with diabetic mellitus, vascular disorders, and Alzheimer's disease. The SSAO-catalyzed deamination of endogenous substrates like methylamine led to production of toxic formaldehyde. Chronic elevated methylamine increases the excretion of malondialdehyde and microalbuminuria. Amine oxidase substrates such as methylamine have been shown to stimulate glucose uptake by increasing the recruitment of the glucose transporter GLUT4 from vesicles within the cell to the cell surface. Inhibition of this effect by the presence of semicarbazide and catalase led to the suggestion that the process is mediated by the hydrogen peroxide produced in the oxidation of these amines (PMID: 16049393 , 12686132 , 17406961). Methylamine has been identified as a uremic toxin according to the European Uremic Toxin Working Group (PMID: 22626821).

Entity Information

DBLinks

Other DBLinks
  • CAS Registry Number: 3767-37-1
  • CAS Registry Number: 49784-84-1
  • CAS Registry Number: 74-89-5
  • PubChem: 6329
  • ChEBI: ChEBI:16830
  • HMDB: HMDB0000164
  • KEGG: C00218
  • BioCyc: METHYLAMINE
  • NCBI MeSH: methylamine
  • Wikipedia: Methylamine
  • DrugBank: DB01828
  • RefMet: RM0040578
  • MoNA: HMDB0000164_ms_ms_260
  • MoNA: HMDB0000164_ms_ms_261
  • MoNA: HMDB0000164_ms_ms_262
  • Coconut NaturalProduct: CNP0593707.0

Class / Ontology

Metabolic Network
ID EC Number Name
KEGG:R00606 1.4.9.1 methylamine:amicyanin oxidoreductase (deaminating)
KEGG:R01584 1.4.1.17 N-methyl-L-alanine:NADP+ oxidoreductase (demethylating, deaminating)
KEGG:R01585 6.3.4.12 L-glutamate:methylamine ligase (ADP-forming)
KEGG:R01586 2.1.1.21 L-glutamate:methylamine 1,3-dicarboxypropyltransferase (N-methyl-L-glutamate-forming)
KEGG:R01587 3.5.1.36 N-methyl-2-oxoglutaramate methylamidohydrolase
KEGG:R01588 1.5.8.1 dimethylamine:electron-transferring flavoprotein oxidoreductase
KEGG:R01589 3.5.3.16 methylguanidine amidinohydrolase
KEGG:R02919 1.4.3.4 4-[(1R)-1-hydroxy-2-(methylamino)ethyl]-1,2-benzenediol:oxygen oxidoreductase(deaminating)(flavin-containing)
KEGG:R03359 4.2.1.88 (R)-synephrine hydro-lyase (methylamine-forming)
KEGG:R03620 3.5.1.39 N-methylhexanamide amidohydrolase
KEGG:R04894 1.4.3.4 L-metanephrine:oxygen oxidoreductase (deaminating) (flavin-containing)
KEGG:R05862 1.4.3.19 sarcosine:oxygen oxidoreductase (deaminating)
KEGG:R06154 1.4.3.21 methylamine:oxygen oxidoreductase (deaminating) (copper-containing)
KEGG:R07227 1.21.4.3 acetyl-phosphate methylamine:thioredoxin disulfide oxidoreductase (N-methylglycine-forming)
KEGG:R08347 1.4.3.4 demethylcitalopram:oxygen oxidoreductase(deaminating)(flavin-containing)
KEGG:R09471 C01297 + 2 C00001<=>C19631 + C00218
KEGG:R09998 2.1.1.247 methylamine:coenzyme M methyltransferase
KEGG:R09999 2.1.1.247 dimethylamine:coenzyme M methyltransferase
KEGG:R10014 2.1.1.248 methylamine:[Co(I) corrinoid protein] Co-methyltransferase
KEGG:R10015 2.1.1.249 dimethylamine:[Co(I) corrinoid protein] Co-methyltransferase
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Organism Source

Taxonomy Source

  1. Chelidonium majus [ncbi taxid: 71251]
  2. Claviceps purpurea [ncbi taxid: 5111]
  3. Cycas circinalis [ncbi taxid: 3397]
  4. Fenneropenaeus orientalis [ncbi taxid: ]
  5. Homo sapiens [ncbi taxid: 9606]
  6. Mercurialis annua L. [ncbi taxid: ]
  7. Mercurialis ovata Sternb. & Hoppe [ncbi taxid: ]
  8. Mercurialis perennis L. [ncbi taxid: ]
  9. Mus musculus [ncbi taxid: 10090]
  10. Penaeus orientalis [ncbi taxid: 70917]

Pathway Synthetic

pathway id name
PathBank:SMP0120674 Alkaptonuria
PathBank:SMP0120782 Dopamine beta-Hydroxylase Deficiency
PathBank:SMP0000190 Hawkinsinuria
PathBank:SMP0087450 Tyrosine Metabolism
PathBank:SMP0120729 Tyrosinemia Type I
PathBank:SMP0120817 Monoamine Oxidase-A Deficiency (MAO-A)
PathBank:SMP0120491 Hawkinsinuria
PathBank:SMP0000169 Alkaptonuria
PathBank:SMP0000429 Disulfiram Action Pathway
PathBank:SMP0063684 Tyrosine Metabolism
PathBank:SMP0120453 Alkaptonuria
PathBank:SMP0120509 Tyrosinemia Type I
PathBank:SMP0120598 Monoamine Oxidase-A Deficiency (MAO-A)
PathBank:SMP0000218 Tyrosinemia Type I
PathBank:SMP0000533 Monoamine Oxidase-A Deficiency (MAO-A)
PathBank:SMP0087328 Tyrosine Metabolism
PathBank:SMP0120711 Hawkinsinuria
PathBank:SMP0120779 Tyrosinemia, Transient, of the Newborn
PathBank:SMP0120559 Tyrosinemia, Transient, of the Newborn
PathBank:SMP0120563 Dopamine beta-Hydroxylase Deficiency
View All Pathways