General Information of This Metabolic Reaction (MR) (ID: MR003079)
Formula
SVG example
Reactant Agmatine Product H2O2
Reactant Info Product Info
Other MR(s) Related to The Reactant of This MR
Other MR(s) That Metabolize The Reactant of This MR
MR ID Reactant Product MR Type Related Drug REF
MR003072 Agmatine Gamma-guanidinobutyraldehyde Unclear Agmatine [1]
MR003066 Agmatine Putrescine Unclear Agmatine [1], [2], [3]
MR003078 Agmatine Urea Unclear Agmatine [1]
Other MR(s) Related to The Product of This MR
Other MR(s) That Produce The Product of This MR
MR ID Reactant Product MR Type Related Drug REF
MR007553 Benzylamine Hydrogen peroxide Unclear Benzylamine [4]
MR004188 Dl-glyceraldehyde Hydrogen peroxide Unclear Dl-glyceraldehyde [5]
MR004249 Methylamine H2O2 Oxidation - Deamination Methylamine [6]
References
1 Metabolism and function in animal tissues of agmatine, a biogenic amine formed from arginine Amino Acids. 2004 Feb;26(1):3-8. doi: 10.1007/s00726-003-0030-z.
2 Genome-wide analysis of polyamine biosynthesis genes in wheat reveals gene expression specificity and involvement of STRE and MYB-elements in regulating polyamines under drought. BMC Genomics. 2022 Oct 30;23(1):734. doi: 10.1186/s12864-022-08946-2.
3 Unique Chemistry, Intake, and Metabolism of Polyamines in the Central Nervous System (CNS) and Its Body. Biomolecules. 2022 Mar 25;12(4):501. doi: 10.3390/biom12040501.
4 Chronic benzylamine administration in the drinking water improves glucose tolerance, reduces body weight gain and circulating cholesterol in high-fat diet-fed mice
5 The effect of glyceraldehyde on red cells. Haemoglobin status, oxidative metabolism and glycolysis
6 Deamination of methylamine and angiopathy; toxicity of formaldehyde, oxidative stress and relevance to protein glycoxidation in diabetes

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