Metabolite Card

Chinese Name: 尿酸
Formula: C5H4N4O3 (168.0283)
SMILES:

O=C1NC2=C(N1)C(=O)NC(=O)N2

Synonyms [en]

uric acid; urate; 2,6,8-trioxypurine; Lithic acid; 2,6,8-Trioxopurine; 7,9-Dihydro-1H-purine-2,6,8(3H)-trione

Reviewed

Last reviewed on 2026-04-16.

Cite this Page

Urate. 数据之源,洞见之始. SMRUCC genomics institute, a synthetic life researcher from China. https://biocad_registry.innovation.ac.cn/s/Urate (retrieved 2026-08-20) (CAD Registry RN: BioCAD00000019193). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

Note

Uric acid is a heterocyclic purine derivative that is the final oxidation product of purine metabolism. It is a weak acid distributed throughout the extracellular fluid as sodium urate. Uric acid is produced by the enzyme xanthine oxidase, which oxidizes oxypurines such as xanthine into uric acid. In most mammals, except humans and higher primates, the enzyme uricase further oxidizes uric acid to allantoin. Interestingly, during the Miocene epoch (~15-20 million years ago), two distinct mutations in the primate genome occurred that led to a nonfunctioning uricase gene. Consequently, humans, apes, and certain New World monkeys have much higher uric acid levels (>120 μM) compared with other mammals (<<120 uM). The loss of uricase in higher primates parallels the similar loss of the ability to synthesize ascorbic acid vitamin C. This may be because in higher primates uric acid partially replaces ascorbic acid. Like ascorbic acid, uric acid is an antioxidant. In fact, in primates, uric acid is the major antioxidant in serum and is thought to be a major factor in lengthening life-span and decreasing age-specific cancer rates in humans and other primates (PMID: 6947260). Uric acid is also the end product of nitrogen metabolism in birds and reptiles. In these animal species, it is excreted in feces as a dry mass. In humans and other mammals, the amount of urate in the blood depends on the dietary intake of purines, the level of endogenous urate biosynthesis, and the rate of urate excretion. Several kidney urate transporters are involved in the regulation of plasma urate levels. These include the urate transporter 1 (URAT1), which controls the reabsorption of urate as well as a number of organic ion transporters (OAT), such as OAT1 and OAT3, and the ATP-dependent urate export transporter MRP4. URAT1 is believed to be most critical in the regulation of plasma urate levels. (PMID: 17890445) High levels of plasma uric acid lead to a condition called hyperuricemia while low levels are associated with a condition called hypouricemia. Hyperuricemia has been defined as a uric acid concentration greater than 380 μM, while hypouricemia is generally defined as a urate concentration of less than 120 μM. Hyperuricemia can arise from a number of factors, including both acute and chronic causes. Acute causes of hyperuricemia include the intake of large amounts of alcohol, tumor lysis syndrome and a diet that is rich in purines or proteins. Chronic hyperuricemia can arise from a reduction in the kidney’s glomerular filtration rate, a decrease in the excretion of urate or an increase in overall tubular absorption in the kidneys. Hyperuricemia has been linked to a number of diseases and conditions, including gout, hypertension, cardiovascular disease, myocardial infarction, stroke, and renal disease. Uric acid has been identified as a uremic toxin according to the European Uremic Toxin Working Group (PMID: 22626821). Many of the causes of hyperuricemia are correctable either with lifestyle changes or drugs. Lifestyle changes include reducing weight and reducing the consumption of protein, purines, and alcohol. There are two kinds of drugs that can be used to treat chronic hyperuricemia. Xanthine oxidase inhibitors, such as allopurinol, inhibit the production of urate by blocking urate synthesis. Alternately, uricosuric drugs, such as probenecid, sulfinpyrazone, and benzpromarone, are used to reduce the serum urate concentration through the inhibition of the URAT1 transporter. (PMID: 17890445). Uric acid (especially crystalline uric acid) is also thought to be an essential initiator and amplifier of allergic inflammation for asthma and peanut allergies (PMID: 21474346). 

Entity Information

DBLinks

Other DBLinks
  • CAS Registry Number: 13154-20-6
  • CAS Registry Number: 69-93-2
  • PubChem: 1175
  • ChEBI: ChEBI:149476
  • ChEBI: ChEBI:17775
  • ChEBI: ChEBI:27226
  • HMDB: HMDB0000289
  • HMDB: HMDB00289
  • KEGG: C00366
  • BioCyc: CPD-15332
  • BioCyc: URATE
  • NCBI MeSH: Uric Acid
  • Wikipedia: Uric_acid
  • DrugBank: DB01696
  • DrugBank: DB08844
  • RefMet: RM0160856
  • MoNA: BAF_UVA_POS000239
  • MoNA: BAF_UVA_POS001066
  • MoNA: BAF_UVA_POS001067
  • MoNA: BAF_UVA_POS001068
  • MoNA: CCMSLIB00000578100
  • MoNA: CCMSLIB00005464123
  • MoNA: CCMSLIB00005464208
  • MoNA: CCMSLIB00005464209
  • MoNA: CCMSLIB00005467923
  • MoNA: CCMSLIB00005720621
  • MoNA: EMBL-MCF_spec10464
  • MoNA: EMBL_MCF_2_0_HRMS_Library000020
  • MoNA: EMBL_MCF_2_0_HRMS_Library000499
  • MoNA: EMBL_MCF_2_0_HRMS_Library000500
  • MoNA: FiehnLib000369
  • MoNA: HMDB0000289_c_ms_1798
  • MoNA: HMDB0000289_c_ms_1827
  • MoNA: HMDB0000289_ms_ms_489
  • MoNA: HMDB0000289_ms_ms_490
  • MoNA: HMDB0000289_ms_ms_491
  • MoNA: MoNA001736
  • MoNA: MoNA001738
  • MoNA: MoNA001740
  • MoNA: MoNA010316
  • MoNA: MoNA010317
  • MoNA: MoNA010318
  • MoNA: MoNA010319
  • MoNA: MoNA010320
  • MoNA: MoNA010321
  • MoNA: MoNA011399
  • MoNA: MoNA011400
  • MoNA: MoNA011401
  • MoNA: MoNA016811
  • MoNA: MoNA024346
  • MoNA: MoNA033836
  • MoNA: MoNA033837
  • MoNA: MoNA033839
  • MoNA: MoNA037799
  • MoNA: MT000083
  • MoNA: OUF00485
  • MoNA: PS114501
  • MoNA: PS114502
  • MoNA: PS114507
  • MoNA: RP013601
  • MoNA: RP013602
  • Metlin: METLIN_88
  • Coconut NaturalProduct: CNP0156874.0
  • Coconut NaturalProduct: CNP0267147.1
  • Coconut NaturalProduct: CNP0533546.0
  • PMHub: MS000000609
  • metaboanalyst: 1010ae4a324d0d2a90b6736192093c93
  • metaboanalyst: 6cfc35b408c6f59f508706f368bcf481
  • metaboanalyst: 7074e0e74f1103673f6b0f0bfb9a6ee3
  • metaboanalyst: 719cf3805799c94b0617532aa9cc6749
  • HERB: HBIN047572
  • HERB: HBIN047577

Class / Ontology

Metabolic Network
ID EC Number Name
KEGG:R02103 1.17.1.4 xanthine:NAD+ oxidoreductase
KEGG:R02106 1.7.3.3 urate:oxygen oxidoreductase
KEGG:R02107 1.17.3.2 xanthine:oxygen oxidoreductase
KEGG:R02646 2.4.2.16 urate-3-ribonucleoside:phosphate D-ribosyltransferase
KEGG:R09514 1.14.13.113 urate,NADH:oxygen oxidoreductase (5-hydroxyisourate forming)
KEGG:R09876 3.5.4.32 8-oxoguanine aminohydrolase
KEGG:R10920 1.14.11.48 xanthine,2-oxoglutarate:oxygen oxidoreductase
BioCyc:RXN0-901 1.17.1.4 XANTHINE + NAD + WATER<=>URATE + NADH + PROTON
BioCyc:TRANS-RXN0-530 urate:proton symport
Rhea:RHEA:13910 2.4.2.16 urate D-ribonucleoside + phosphate => α-D-ribose 1-phosphate + urate
Rhea:RHEA:13911 2.4.2.16 α-D-ribose 1-phosphate + urate => urate D-ribonucleoside + phosphate
Rhea:RHEA:13912 2.4.2.16 urate D-ribonucleoside + phosphate <=> α-D-ribose 1-phosphate + urate
Rhea:RHEA:16462 urate(in) + ATP + H2O => urate(out) + ADP + phosphate + H+
Rhea:RHEA:16463 urate(out) + ADP + phosphate + H+ => urate(in) + ATP + H2O
Rhea:RHEA:16464 urate(in) + ATP + H2O <=> urate(out) + ADP + phosphate + H+
Rhea:RHEA:16670 1.17.1.4 xanthine + NAD+ + H2O => urate + NADH + H+
Rhea:RHEA:16671 1.17.1.4 urate + NADH + H+ => xanthine + NAD+ + H2O
Rhea:RHEA:16672 1.17.1.4 xanthine + NAD+ + H2O <=> urate + NADH + H+
Rhea:RHEA:21133 1.17.3.2 xanthine + O2 + H2O => urate + H2O2
Rhea:RHEA:21134 1.17.3.2 urate + H2O2 => xanthine + O2 + H2O
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Mass Spectrum
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View All Mass Spectrum
Organism Source

Taxonomy Source

  1. Arabidopsis thaliana [ncbi taxid: 3702]
  2. Bombyx mori [ncbi taxid: 7091]
  3. Bos taurus domesticus [ncbi taxid: ]
  4. Citrullus lanatus [ncbi taxid: 3654]
  5. Homo sapiens [ncbi taxid: 9606]
  6. Lasiosphaera fenzlii [ncbi taxid: ]
  7. Vespertilio superans [ncbi taxid: ]
  8. Escherichia coli [ncbi taxid: 562]
  9. Homo sapiens [ncbi taxid: 9606]
  10. Lepidium sativum [ncbi taxid: 33125]
  11. Mus musculus [ncbi taxid: 10090]

Pathway Synthetic

pathway id name
BioCyc:TRYPANO_SALVADEHYPOX-PWY salvage pathways of adenine, hypoxanthine, and their nucleosides
PathBank:SMP0002103 Adenosine Nucleotides Degradation
Plant Reactome:R-MES-2744345 Metabolism and regulation
Plant Reactome:R-MES-1119407 ureide biogenesis
Plant Reactome:R-TDI-2744345 Metabolism and regulation
Plant Reactome:R-TDI-5655149 Nucleotide metabolism
Plant Reactome:R-DRO-2744345 Metabolism and regulation
Plant Reactome:R-OGU-5655149 Nucleotide metabolism
Plant Reactome:R-OMI-1119407 ureide biogenesis
Plant Reactome:R-GSU-5655149 Nucleotide metabolism
Plant Reactome:R-PTI-2744345 Metabolism and regulation
Plant Reactome:R-GMA-2744345 Metabolism and regulation
Plant Reactome:R-GMA-1119407 ureide biogenesis
Plant Reactome:R-PDA-2744345 Metabolism and regulation
Plant Reactome:R-PVU-2744345 Metabolism and regulation
Plant Reactome:R-PVU-5655149 Nucleotide metabolism
Plant Reactome:R-BNA-5655149 Nucleotide metabolism
Plant Reactome:R-LPE-5655149 Nucleotide metabolism
Plant Reactome:R-PAB-5655149 Nucleotide metabolism
Plant Reactome:R-SIT-1119407 ureide biogenesis
View All Pathways