methylammonium (BioCAD00000480370)

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Metabolite Card

Formula: CH6N (32.05)
SMILES: C[NH3+]

Synonyms [en]

methylammonium; methylamine; monomethylammonium ion; methanaminium; methanaminium cation; methylammonium ion

Reviewed

Last reviewed on 2024-06-28.

Cite this Page

methylammonium. 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: BioCAD00000480370). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

Note

The conjugate acid of methylamine; major species at pH 7.3." []

Entity Information

DBLinks

Other DBLinks
  • CAS Registry Number: 17000-00-9
  • PubChem: 644041
  • ChEBI: ChEBI:131823
  • ChEBI: ChEBI:59338
  • BioCyc: METHYLAMINE
  • NCBI MeSH: methylamine

Class / Ontology

Metabolic Network
ID EC Number Name
Rhea:RHEA:10205 1.5.8.1 dimethylamine + oxidized [electron-transfer flavoprotein] + H2O + H+ => methylamine + reduced [electron-transfer flavoprotein] + formaldehyde
Rhea:RHEA:10206 1.5.8.1 methylamine + reduced [electron-transfer flavoprotein] + formaldehyde => dimethylamine + oxidized [electron-transfer flavoprotein] + H2O + H+
Rhea:RHEA:10207 1.5.8.1 dimethylamine + oxidized [electron-transfer flavoprotein] + H2O + H+ <=> methylamine + reduced [electron-transfer flavoprotein] + formaldehyde
Rhea:RHEA:11765 3.5.3.16 methylguanidine + H2O => urea + methylamine
Rhea:RHEA:11766 3.5.3.16 urea + methylamine => methylguanidine + H2O
Rhea:RHEA:11767 3.5.3.16 methylguanidine + H2O <=> urea + methylamine
Rhea:RHEA:12826 1.21.4.3 acetyl phosphate + methylamine + [thioredoxin]-disulfide + H2O => sarcosine + [thioredoxin]-dithiol + phosphate + H+
Rhea:RHEA:12827 1.21.4.3 sarcosine + [thioredoxin]-dithiol + phosphate + H+ => acetyl phosphate + methylamine + [thioredoxin]-disulfide + H2O
Rhea:RHEA:12828 1.21.4.3 acetyl phosphate + methylamine + [thioredoxin]-disulfide + H2O <=> sarcosine + [thioredoxin]-dithiol + phosphate + H+
Rhea:RHEA:15166 1.4.3.19 sarcosine + O2 + H2O => methylamine + glyoxylate + H2O2
Rhea:RHEA:15167 1.4.3.19 methylamine + glyoxylate + H2O2 => sarcosine + O2 + H2O
Rhea:RHEA:15168 1.4.3.19 sarcosine + O2 + H2O <=> methylamine + glyoxylate + H2O2
Rhea:RHEA:15838 2.1.1.21 methylamine + L-glutamate => N-methyl-L-glutamate + NH4+
Rhea:RHEA:15839 2.1.1.21 N-methyl-L-glutamate + NH4+ => methylamine + L-glutamate
Rhea:RHEA:15840 2.1.1.21 methylamine + L-glutamate <=> N-methyl-L-glutamate + NH4+
Rhea:RHEA:16002 N6-methyl-AMP + H2O + H+ => IMP + methylamine
Rhea:RHEA:16003 IMP + methylamine => N6-methyl-AMP + H2O + H+
Rhea:RHEA:16004 N6-methyl-AMP + H2O + H+ <=> IMP + methylamine
Rhea:RHEA:17118 6.3.4.12 methylamine + L-glutamate + ATP => N5-methyl-L-glutamine + ADP + phosphate + H+
Rhea:RHEA:17119 6.3.4.12 N5-methyl-L-glutamine + ADP + phosphate + H+ => methylamine + L-glutamate + ATP
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Organism Source

Taxonomy Source

Pathway Synthetic

pathway id name
BioCyc:META_PWY-7431 aromatic biogenic amine degradation (bacteria)
BioCyc:META_PWY-6342 noradrenaline and adrenaline degradation
BioCyc:META_PWY-6993 nicotine degradation II (pyrrolidine pathway)
BioCyc:META_PWY66-201 nicotine degradation IV
BioCyc:META_GLYCLEAV-PWY glycine cleavage
BioCyc:META_PWY-5248 methanogenesis from dimethylamine
BioCyc:THAPS_PWY-6342 noradrenaline and adrenaline degradation
BioCyc:META_GLYCINE-SYN2-PWY glycine biosynthesis II
BioCyc:META_PWY-6962 superpathway of trimethylamine degradation
BioCyc:META_PWY-6968 trimethylamine degradation
BioCyc:META_PWY-7978 N-methylpyrrolidone degradation
BioCyc:META_PWY-4741 creatinine degradation III
BioCyc:ANTHRA_PWY-7431 aromatic biogenic amine degradation (bacteria)
BioCyc:SCO_PWY-1701 methanol and methylamine oxidation to formaldehyde
BioCyc:MOB3B_PWY-1882 superpathway of C1 compounds oxidation to CO2
BioCyc:META_PWY-7128 nicotine degradation III (VPP pathway)
BioCyc:META_P181-PWY nicotine degradation I (pyridine pathway)
BioCyc:META_PWY-6965 methylamine degradation II
BioCyc:META_PWY-6967 methylamine degradation I
BioCyc:SCO_PWY-1882 superpathway of C1 compounds oxidation to CO2
View All Pathways