4-Hydroxy-2-quinolinecarboxylic acid (BioCAD00000004326)

blood cerebrospinal fluid (csf) feces urine brain epidermis fibroblasts placenta prostate

Metabolite Card

Formula: C10H7NO3 (189.0426)
SMILES: OC(=O)C1=CC(=O)C2=CC=CC=C2N1

Synonyms [en]

Kynurenic acid; 4-HYDROXY-2-QUINOLINECARBOXYLIC ACID; 4-hydroxyquinoline-2-carboxylic acid; Kynurenate; 4-Hydroxyquinaldic acid; Kynurensaeure

Reviewed

Last reviewed on 2024-06-28.

Cite this Page

4-Hydroxy-2-quinolinecarboxylic acid. 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: BioCAD00000004326). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

Note

Kynurenic acid (KYNA) is a well-known endogenous antagonist of the glutamate ionotropic excitatory amino acid receptors N-methyl-D-aspartate (NMDA), alphaamino-3-hydroxy-5-methylisoxazole-4-propionic acid and kainate receptors and of the nicotine cholinergic subtype alpha 7 receptors. KYNA neuroprotective and anticonvulsive activities have been demonstrated in animal models of neurodegenerative diseases. Because of KYNA's neuromodulatory character, its involvement has been speculatively linked to the pathogenesis of a number of neurological conditions including those in the ageing process. Different patterns of abnormalities in various stages of KYNA metabolism in the CNS have been reported in Alzheimer's disease, Parkinson's disease and Huntington's disease. In HIV-1-infected patients and in patients with Lyme neuroborreliosis a marked rise of KYNA metabolism was seen. In the ageing process KYNA metabolism in the CNS of rats shows a characteristic pattern of changes throughout the life span. A marked increase of the KYNA content in the CNS occurs before the birth, followed by a dramatic decline on the day of birth. A low activity was seen during ontogenesis, and a slow and progressive enhancement occurs during maturation and ageing. This remarkable profile of KYNA metabolism alterations in the mammalian brain has been suggested to result from the development of the organisation of neuronal connections and synaptic plasticity, development of receptor recognition sites, maturation and ageing. There is significant evidence that KYNA can improve cognition and memory, but it has also been demonstrated that it interferes with working memory. Impairment of cognitive function in various neurodegenerative disorders is accompanied by profound reduction and/or elevation of KYNA metabolism. The view that enhancement of CNS KYNA levels could underlie cognitive decline is supported by the increased KYNA metabolism in Alzheimer's disease, by the increased KYNA metabolism in down's syndrome and the enhancement of KYNA function during the early stage of Huntington's disease. Kynurenic acid is the only endogenous N-methyl-D-aspartate (NMDA) receptor antagonist identified up to now, that mediates glutamatergic hypofunction. Schizophrenia is a disorder of dopaminergic neurotransmission, but modulation of the dopaminergic system by glutamatergic neurotransmission seems to play a key role. Despite the NMDA receptor antagonism, kynurenic acid also blocks, in lower doses, the nicotinergic acetycholine receptor, i.e., increased kynurenic acid levels can explain psychotic symptoms and cognitive deterioration. Kynurenic acid levels are described to be higher in the cerebrospinal fluid (CSF) and in critical central nervous system (CNS) regions of schizophrenics as compared to controls. (PMID: 17062375 , 16088227). KYNA has also been identified as a uremic toxin according to the European Uremic Toxin Working Group (PMID: 22626821).

Entity Information

DBLinks

Other DBLinks
  • CAS Registry Number: 13593-94-7
  • CAS Registry Number: 492-27-3
  • PubChem: 3845
  • PubChem: 4854
  • ChEBI: ChEBI:18344
  • HMDB: HMDB0000715
  • HMDB: HMDB00715
  • KEGG: C01717
  • BioCyc: KYNURENATE
  • NCBI MeSH: Kynurenic Acid
  • Wikipedia: Kynurenic_acid
  • DrugBank: DB11937
  • RefMet: RM0032431
  • MoNA: BAF_UVA_POS000657
  • MoNA: BAF_UVA_POS001538
  • MoNA: BAF_UVA_POS001539
  • MoNA: BAF_UVA_POS001540
  • MoNA: BML00236
  • MoNA: BML00243
  • MoNA: BML00250
  • MoNA: BML81545
  • MoNA: BML81546
  • MoNA: BML81547
  • MoNA: BML81548
  • MoNA: CCMSLIB00000578308
  • MoNA: CCMSLIB00005464127
  • MoNA: CCMSLIB00005464187
  • MoNA: CCMSLIB00005720505
  • MoNA: CCMSLIB00005720798
  • MoNA: CCMSLIB00005724328
  • MoNA: EMBL-MCF_spec139147
  • MoNA: EMBL-MCF_spec139215
  • MoNA: EMBL-MCF_spec69828
  • MoNA: EMBL_MCF_2_0_HRMS_Library000039
  • MoNA: EMBL_MCF_2_0_HRMS_Library000253
  • MoNA: FiehnHILIC000465
  • MoNA: FiehnHILIC001285
  • MoNA: FiehnHILIC002038
  • MoNA: FiehnHILIC002786
  • MoNA: FiehnLib000257
  • MoNA: FIO00643
  • MoNA: FIO00644
  • MoNA: FIO00645
  • MoNA: FIO00646
  • MoNA: FIO00647
  • MoNA: FIO00648
  • MoNA: FIO00649
  • MoNA: FIO00650
  • MoNA: FIO00651
  • MoNA: FIO00652
  • MoNA: GLS00094
  • MoNA: HMDB0000715_c_ms_1769
  • MoNA: HMDB0000715_ms_ms_1000
  • MoNA: HMDB0000715_ms_ms_1001
  • MoNA: HMDB0000715_ms_ms_999
  • MoNA: MoNA002190
  • MoNA: MoNA002191
  • MoNA: MoNA002192
  • MoNA: MoNA010196
  • MoNA: MoNA010197
  • MoNA: MoNA010198
  • MoNA: MoNA010199
  • MoNA: MoNA010200
  • MoNA: MoNA010201
  • MoNA: MoNA011135
  • MoNA: MoNA011136
  • MoNA: MoNA011137
  • MoNA: MoNA011138
  • MoNA: MoNA016733
  • MoNA: MoNA033436
  • MoNA: MoNA033437
  • MoNA: MoNA033439
  • MoNA: MoNA034339
  • MoNA: MoNA034340
  • MoNA: MoNA034341
  • MoNA: MoNA035570
  • MoNA: MoNA035572
  • MoNA: MoNA035574
  • MoNA: MoNA036235
  • MoNA: MoNA036236
  • MoNA: MoNA036237
  • MoNA: MoNA036869
  • MoNA: MoNA036870
  • MoNA: MoNA036871
  • MoNA: MoNA037255
  • MoNA: MoNA037633
  • MoNA: MoNA037980
  • MoNA: MoNA038379
  • MoNA: MoNA038624
  • MoNA: MoNA038859
  • MoNA: OUF00292
  • MoNA: PR100406
  • MoNA: PR100864
  • MoNA: PS102001
  • MoNA: PS102002
  • MoNA: PS102003
  • MoNA: PS102004
  • MoNA: PS102005
  • MoNA: PS102006
  • MoNA: PT110200
  • MoNA: PT210200
  • MoNA: VF-NPL-LTQ000311
  • MoNA: VF-NPL-LTQ000312
  • MoNA: VF-NPL-QEHF000655
  • MoNA: VF-NPL-QEHF000656
  • MoNA: VF-NPL-QEHF000657
  • Metlin: METLIN_5683
  • Coconut NaturalProduct: CNP0530506.0

Class / Ontology

Metabolic Network
ID EC Number Name
KEGG:R03439 1.14.99.2 kynurenate:oxygen oxidoreductase (hydroxylating)
KEGG:R03440 1.14.99.2 kynurenate:oxygen oxidoreductase (hydroxylating)
KEGG:R03441 1.14.99.2 kynurenate,acceptor:oxygen oxidoreductase (hydroxylating)
KEGG:R03445 2.6.1.7 C01252<=>C01717 + C00001
KEGG:R03687 1.3.99.18 2-quinolinecarboxylic acid:acceptor 4-oxidoreductase (hydroxylating)
KEGG:R12688 2.6.1.7 L-kynurenine:2-oxoglutarate aminotransferase
KEGG:R12692 2.6.1.63 L-kynurenine:glyoxylate aminotransferase (cyclizing)
BioCyc:RXN-10720 CPD-476 --> KYNURENATE + WATER + PROTON
BioCyc:RXN-21858 2.6.1.7 CPD-14736 + 2-KETOGLUTARATE --> KYNURENATE + GLT + WATER + PROTON
BioCyc:1.3.99.18-RXN 1.3.99.18 QUINALDATE + Acceptor + WATER<=>KYNURENATE + Donor-H2 + PROTON
BioCyc:RXN-21998 2.6.1.63 CPD-14736 + GLYOX --> KYNURENATE + GLY + WATER + PROTON
BioCyc:KYNURENINE-78-HYDROXYLASE-RXN 1.14.99.2 KYNURENATE + OXYGEN-MOLECULE + Donor-H2 --> CPD-274 + Acceptor
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Organism Source

Taxonomy Source

  1. Ephedra pachyclada ssp.sinaica [ncbi taxid: ]
  2. FOOD SAKE [ncbi taxid: ]

Pathway Synthetic

pathway id name
WikiPathways:WP3604 Biochemical pathways: part I
WikiPathways:WP465 Tryptophan metabolism
WikiPathways:WP5044 Kynurenine pathway and links to cell senescence
WikiPathways:WP79 Tryptophan metabolism
PathBank:SMP0087330 Tryptophan Metabolism
PathBank:SMP0087237 Tryptophan Metabolism
PathBank:SMP0063693 Tryptophan Metabolism
PathBank:SMP0000063 Tryptophan Metabolism
PathBank:SMP0087451 Tryptophan Metabolism
View All Pathways