Metabolite Card

Chinese Name: 次黄嘌呤
Formula: C5H4N4O (136.0385)
SMILES:

OC1=NC=NC2=C1NC=N2

Synonyms [en]

hypoxanthine; Purine-6-ol; 6-Oxopurine; Sarkin; 1,7-Dihydro-6H-purin-6-one; 6(1H)-Purinone

Reviewed

Last reviewed on 2026-04-16.

Cite this Page

Hypoxanthine. 数据之源,洞见之始. SMRUCC genomics institute, a synthetic life researcher from China. https://biocad_registry.innovation.ac.cn/s/Hypoxanthine (retrieved 2026-08-20) (CAD Registry RN: BioCAD00000012307). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

Note

Hypoxanthine, also known as purine-6-ol or Hyp, belongs to the class of organic compounds known as purines. Purines are a bicyclic aromatic compound made up of a pyrimidine ring fused to an imidazole ring. Hypoxanthine is also classified as an oxopurine, Hypoxanthine is a naturally occurring purine derivative and a reaction intermediate in the metabolism of adenosine and in the formation of nucleic acids by the nucleotide salvage pathway. Hypoxanthine exists in all living species, ranging from bacteria to plants to humans. Hypoxanthine has been detected, but not quantified in, several different foods, such as radish (var.), mountain yams, welsh onions, greenthread tea, and common beets. Hypoxanthine is occasionally found as a constituent of nucleic acids, where it is present in the anticodon of tRNA in the form of its nucleoside inosine. Biologically, hypoxanthine can be formed a number of ways. For instance, it is one of the products of the action of xanthine oxidase on xanthine. However, more frequently xanthine is formed from oxidation of hypoxanthine by xanthine oxidoreductase. The enzyme hypoxanthine-guanine phosphoribosyltransferase converts hypoxanthine into IMP in the nucleotide salvage pathway. Hypoxanthine is also a spontaneous deamination product of adenine. Under normal circumstances hypoxanthine is readily converted to uric acid. In this process, hypoxanthine is first oxidized to xanthine, which is further oxidized to uric acid by xanthine oxidase. Molecular oxygen, the oxidant in both reactions, is reduced to H2O2 and other reactive oxygen species. In humans, uric acid is the final product of purine degradation and is excreted in the urine. Within humans, hypoxanthine participates in a number of other enzymatic reactions. In particular, hypoxanthine and ribose 1-phosphate can be biosynthesized from inosine through its interaction with the enzyme purine nucleoside phosphorylase. Hypoxanthine is also involved in the metabolic disorder called the purine nucleoside phosphorylase deficiency. Purine nucleoside phosphorylase (PNP) deficiency is a disorder of the immune system (primary immunodeficiency) characterized by recurrent infections, neurologic symptoms, and autoimmune disorders. PNP deficiency causes a shortage of white blood cells, called T-cells, that help fight infection. Affected individuals develop neurologic symptoms, such as stiff or rigid muscles (spasticity), uncoordinated movements (ataxia), developmental delay, and intellectual disability. PNP deficiency is associated with an increased risk to develop autoimmune disorders, such as autoimmune hemolytic anemia, idiopathic thrombocytopenic purpura (ITP), autoimmune neutropenia, thyroiditis, and lupus.

Entity Information

DBLinks

Other DBLinks
  • CAS Registry Number: 1246820-04-1
  • CAS Registry Number: 146445-70-7
  • CAS Registry Number: 146469-94-5
  • CAS Registry Number: 146469-95-6
  • CAS Registry Number: 146469-96-7
  • CAS Registry Number: 244769-71-9
  • CAS Registry Number: 25991-08-6
  • CAS Registry Number: 26979-06-6
  • CAS Registry Number: 3789-59-1
  • CAS Registry Number: 51953-04-9
  • CAS Registry Number: 51953-23-2
  • CAS Registry Number: 68-94-0
  • CAS Registry Number: 68-94-0 | 146469-94-5 | 146469-95-6 | 146445-70-7 | 51953-04-9 | 95121-06-5
  • CAS Registry Number: 95121-06-5
  • PubChem: 135398638
  • PubChem: 3560
  • PubChem: 790
  • ChEBI: ChEBI:17368
  • HMDB: HMDB0000157
  • HMDB: HMDB00157
  • KEGG: C00262
  • BioCyc: HYPOXANTHINE
  • NCBI MeSH: Hypoxanthine
  • Wikipedia: Hypoxanthine
  • DrugBank: DB04076
  • RefMet: RM0135895
  • MoNA: Alkaloids000005
  • MoNA: Alkaloids000006
  • MoNA: BAF_UVA_POS000798
  • MoNA: BAF_UVA_POS000799
  • MoNA: BAF_UVA_POS000800
  • MoNA: Bruker_HCD_library000847
  • MoNA: CCMSLIB00000577903
  • MoNA: CCMSLIB00000578135
  • MoNA: CCMSLIB00005464066
  • MoNA: CCMSLIB00005464067
  • MoNA: CCMSLIB00005464092
  • MoNA: CCMSLIB00005720347
  • MoNA: CCMSLIB00005720637
  • MoNA: DNAAdduct004269
  • MoNA: DNAAdduct004270
  • MoNA: DNAAdduct004271
  • MoNA: DNAAdduct004272
  • MoNA: DNAAdduct004273
  • MoNA: DNAAdduct004274
  • MoNA: DNAAdduct004275
  • MoNA: DNAAdduct004276
  • MoNA: DNAAdduct004277
  • MoNA: DNAAdduct004278
  • MoNA: DNAAdduct004279
  • MoNA: DNAAdduct004280
  • MoNA: DNAAdduct004281
  • MoNA: DNAAdduct004282
  • MoNA: DNAAdduct004283
  • MoNA: DNAAdduct004284
  • MoNA: DNAAdduct004285
  • MoNA: EMBL-MCF_spec102016
  • MoNA: EMBL-MCF_spec26449
  • MoNA: EMBL-MCF_spec98217
  • MoNA: EMBL-MCF_spec98230
  • MoNA: EMBL_MCF_2_0_HRMS_Library000181
  • MoNA: EMBL_MCF_2_0_HRMS_Library000182
  • MoNA: EMBL_MCF_2_0_HRMS_Library000484
  • MoNA: FiehnHILIC000426
  • MoNA: FiehnHILIC001255
  • MoNA: FiehnHILIC001998
  • MoNA: FiehnHILIC002756
  • MoNA: FiehnLib000452
  • MoNA: FiehnLib000453
  • MoNA: HMDB0000157_c_ms_1487
  • MoNA: HMDB0000157_ms_ms_242
  • MoNA: HMDB0000157_ms_ms_243
  • MoNA: HMDB0000157_ms_ms_244
  • MoNA: JP009501
  • MoNA: KNA00471
  • MoNA: KNA00472
  • MoNA: KNA00473
  • MoNA: KNA00569
  • MoNA: KNA00570
  • MoNA: KNA00571
  • MoNA: KO000983
  • MoNA: KO000984
  • MoNA: KO000985
  • MoNA: KO000986
  • MoNA: KO000987
  • MoNA: KO003073
  • MoNA: KO003074
  • MoNA: KO003075
  • MoNA: KO003076
  • MoNA: KO003077
  • MoNA: KZ000035
  • MoNA: MoNA002256
  • MoNA: MoNA002257
  • MoNA: MoNA002258
  • MoNA: MoNA010256
  • MoNA: MoNA010257
  • MoNA: MoNA010258
  • MoNA: MoNA010259
  • MoNA: MoNA010260
  • MoNA: MoNA010261
  • MoNA: MoNA011115
  • MoNA: MoNA011116
  • MoNA: MoNA011117
  • MoNA: MoNA011118
  • MoNA: MoNA016723
  • MoNA: MoNA024259
  • MoNA: MoNA024309
  • MoNA: MoNA032573
  • MoNA: MoNA032578
  • MoNA: MoNA032579
  • MoNA: MoNA033470
  • MoNA: MoNA033471
  • MoNA: MoNA033473
  • MoNA: MoNA036410
  • MoNA: MoNA036411
  • MoNA: MoNA036414
  • MoNA: MoNA036896
  • MoNA: MoNA036897
  • MoNA: MoNA036899
  • MoNA: MoNA037361
  • MoNA: MoNA037646
  • MoNA: MoNA038699
  • MoNA: MoNA038869
  • MoNA: MoNA_0006271
  • MoNA: MoNA_0006272
  • MoNA: MoNA_0006273
  • MoNA: MoNA_0006274
  • MoNA: MoNA_0006275
  • MoNA: MoNA_0006276
  • MoNA: MoNA_0006515
  • MoNA: MoNA_0006516
  • MoNA: MoNA_0006517
  • MoNA: MoNA_0006519
  • MoNA: MoNA_0006520
  • MoNA: MoNA_0006524
  • MoNA: MoNA_0007651
  • MoNA: MoNA_0007652
  • MoNA: MoNA_0007653
  • MoNA: MoNA_0007654
  • MoNA: MoNA_0007655
  • MoNA: MoNA_0007656
  • MoNA: MoNA_0007998
  • MoNA: MoNA_0007999
  • MoNA: MoNA_0008289
  • MoNA: MoNA_0008290
  • MoNA: MoNA_0008291
  • MoNA: MoNA_0008292
  • MoNA: MoNA_0009829
  • MoNA: MoNA_0009830
  • MoNA: MoNA_0009831
  • MoNA: MoNA_0009832
  • MoNA: MoNA_0009834
  • MoNA: MT000055
  • MoNA: OUF00273
  • MoNA: PR010165
  • MoNA: PS025201
  • MoNA: PS025202
  • MoNA: PS025203
  • MoNA: QE_Alk_neg000004
  • MoNA: QE_Alk_neg000005
  • MoNA: TOF_alkaloids_neg000004
  • MoNA: TOF_alkaloids_pos000004
  • MoNA: TOF_alkaloids_pos000005
  • MoNA: VF-NPL-QEHF026149
  • MoNA: VF-NPL-QEHF026150
  • MoNA: VF-NPL-QEHF026151
  • MoNA: VF-NPL-QEHF026152
  • MoNA: VF-NPL-QEHF026153
  • MoNA: VF-NPL-QEHF026154
  • MoNA: VF-NPL-QEHF026155
  • MoNA: VF-NPL-QEHF026156
  • MoNA: VF-NPL-QEHF026157
  • MoNA: VF-NPL-QEHF026158
  • MoNA: VF-NPL-QEHF026159
  • MoNA: VF-NPL-QEHF026160
  • MoNA: VF-NPL-QEHF026161
  • MoNA: VF-NPL-QEHF026162
  • MoNA: VF-NPL-QEHF026163
  • MoNA: VF-NPL-QTOF008023
  • MoNA: VF-NPL-QTOF008024
  • MoNA: VF-NPL-QTOF008025
  • Metlin: METLIN_83
  • Coconut NaturalProduct: CNP0229561.0
  • Coconut NaturalProduct: CNP0358774.0
  • Coconut NaturalProduct: CNP0437980.1
  • Coconut NaturalProduct: CNP0437980.2
  • Coconut NaturalProduct: CNP0505598.0
  • Coconut NaturalProduct: CNP0549201.0
  • Coconut NaturalProduct: CNP0551907.0
  • PMHub: MS000000378
  • metaboanalyst: 95006ce7c6eb0f13b8a0fbd939230262
  • metaboanalyst: 9e71ee39f215b01269135980c939ca12
  • metaboanalyst: d28427be579c00fad6e1eb43a4be4901
  • metaboanalyst: d815611c6e1aa5de50321272b28d7df0
  • metaboanalyst: faf34bb6711449f4c5890917e01b43e2
  • metaboanalyst: fb36b6f13c3969c6b72a176a9b1b2fa2
  • HERB: HBIN012740
  • HERB: HBIN029645
  • HERB: HBIN029878

Class / Ontology

Metabolic Network
ID EC Number Name
KEGG:R01128 3.2.2.12 5'-inosinate phosphoribohydrolase
KEGG:R01132 2.4.2.8 IMP:diphosphate phospho-D-ribosyltransferase
KEGG:R01244 3.5.4.2 adenine aminohydrolase
KEGG:R01768 1.17.1.4 hypoxanthine:NAD+ oxidoreductase
KEGG:R01769 1.17.3.2 hypoxanthine:oxygen oxidoreductase
KEGG:R01770 3.2.2.1 inosine ribohydrolase
KEGG:R01863 2.4.2.1 inosine:phosphate alpha-D-ribosyltransferase
KEGG:R02748 2.4.2.1 deoxyinosine:orthophosphate ribosyltransferase
KEGG:R08587 3.2.2.26 futalosine ribohydrolase
KEGG:R09668 2.4.2.44 S-methyl-5'-thioinosine:phosphate S-methyl-5-thio-alpha-D-ribosyl-transferase
BioCyc:DEOXYINOPHOSPHOR-RXN 2.4.2.1 DEOXYINOSINE + Pi<=>HYPOXANTHINE + DEOXY-D-RIBOSE-1-PHOSPHATE
BioCyc:ADENINE-DEAMINASE-RXN 3.5.4.2 PROTON + WATER + ADENINE --> AMMONIUM + HYPOXANTHINE
BioCyc:3.2.2.15-RXN 3.2.2.15 DNA-With-Hypoxanthines + WATER --> DNA-containing-aPurinic-Sites + HYPOXANTHINE
BioCyc:INOPHOSPHOR-RXN 2.4.2.1 INOSINE + Pi --> HYPOXANTHINE + RIBOSE-1P
BioCyc:HYPOXANPRIBOSYLTRAN-RXN 2.4.2.8 HYPOXANTHINE + PRPP --> IMP + PPI
BioCyc:INOSINE-NUCLEOSIDASE-RXN 3.2.2.2 INOSINE + WATER --> D-Ribofuranose + HYPOXANTHINE
BioCyc:TRANS-RXN0-562 HYPOXANTHINE + PROTON --> HYPOXANTHINE + PROTON
BioCyc:TRANS-RXN0-579 export of hypoxanthine
BioCyc:INOSINATE-NUCLEOSIDASE-RXN 3.2.2.12 IMP + WATER --> HYPOXANTHINE + CPD-15317
BioCyc:RXN-7682 1.17.1.4 HYPOXANTHINE + NAD + WATER --> XANTHINE + NADH + PROTON
View More
Mass Spectrum
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View All Mass Spectrum
Organism Source

Taxonomy Source

  1. Citrullus lanatus [ncbi taxid: 3654]
  2. Lycium chinense [ncbi taxid: 112883]
  3. Bos taurus domesticus [ncbi taxid: ]
  4. Capparis spinosa [ncbi taxid: 65558]
  5. Cervus nippon [ncbi taxid: 9863]
  6. Coprinus atramentarius [ncbi taxid: ]
  7. Cordyceps sinensis [ncbi taxid: ]
  8. FOOD SAKE [ncbi taxid: ]
  9. Fritillaria cirrhosa [ncbi taxid: 108544]
  10. Lycium chinense [ncbi taxid: 112883]
  11. Penaeus orientalis [ncbi taxid: 70917]
  12. Pheretima aspergilum [ncbi taxid: ]
  13. Pinellia pedatisecta [ncbi taxid: 199222]

Pathway Synthetic

pathway id name
BioCyc:HUMAN_PWY-7179-1 purine deoxyribonucleosides degradation
BioCyc:META_PWY-7374 1,4-dihydroxy-6-naphthoate biosynthesis I
BioCyc:META_PWY-6753 S-methyl-5'-thioadenosine degradation III
BioCyc:META_SALVADEHYPOX-PWY adenosine nucleotides degradation II
BioCyc:META_PWY-5044 purine nucleotides degradation I (plants)
BioCyc:META_PWY-7179 purine deoxyribonucleosides degradation I
BioCyc:META_PWY-5497 purine nucleobases degradation II (anaerobic)
BioCyc:META_PWY66-409 superpathway of purine nucleotide salvage
BioCyc:META_PWY-6609 adenine and adenosine salvage III
BioCyc:META_PWY-6263 superpathway of menaquinol-8 biosynthesis II
BioCyc:ECO_PWY-7179 purine deoxyribonucleosides degradation I
BioCyc:VCHO_PWY-7179 purine deoxyribonucleosides degradation I
BioCyc:SHIGELLA_PWY0-1296 purine ribonucleosides degradation
BioCyc:SHIGELLA_PWY-6610 adenine and adenosine salvage IV
BioCyc:ECOO157_SALVADEHYPOX-PWY adenosine nucleotides degradation II
BioCyc:ECOO157_PWY0-1296 purine ribonucleosides degradation
BioCyc:ECOO157_PWY-7179 purine deoxyribonucleosides degradation
BioCyc:ECOO157_PWY-6609 adenine and adenosine salvage III
BioCyc:ECOL199310_PWY-7179 purine deoxyribonucleosides degradation
BioCyc:ECOL199310_PWY0-1297 superpathway of purine deoxyribonucleosides degradation
View All Pathways