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HYDROXYMETHYLBILANE

  • Hydroxymethylbilane
  • Intermediate in the synthesis of porphyrins

    Hydroxymethylbilane, also known as preuroporphyrinogen, is an organic compound that occurs in living organisms during the synthesis of porphyrins, a group

    Hydroxymethylbilane

    Hydroxymethylbilane

    Hydroxymethylbilane

  • Porphobilinogen deaminase
  • Porphobilinogen deaminase (hydroxymethylbilane synthase, or uroporphyrinogen I synthase) is an enzyme (EC 2.5.1.61) that in humans is encoded by the HMBS

    Porphobilinogen deaminase

    Porphobilinogen deaminase

    Porphobilinogen_deaminase

  • Uroporphyrinogen III synthase
  • Class of enzymes

    tetrapyrrole compound porphyrin. It is involved in the conversion of hydroxymethylbilane into uroporphyrinogen III. This enzyme catalyses the inversion of

    Uroporphyrinogen III synthase

    Uroporphyrinogen III synthase

    Uroporphyrinogen_III_synthase

  • Porphyria
  • Metabolic disorders in which porphyrins build up in the body

    than 10 cases ever reported. Acute intermittent porphyria (AIP) Hydroxymethylbilane synthase (HMBS) formerly porphobilinogen deaminase (PBGD) Hepatic

    Porphyria

    Porphyria

    Porphyria

  • Acute intermittent porphyria
  • Medical condition

    result of partial deficiencies from the heme biosynthesis enzymes, hydroxymethylbilane synthase (HMBS;  EC  2.5.1.61). Due to the rarity of this disease

    Acute intermittent porphyria

    Acute intermittent porphyria

    Acute_intermittent_porphyria

  • Heme
  • Chemical coordination complex of an iron ion chelated to a porphyrin

    ferrochelatase (deficiency causes erythropoietic protoporphyria) HMBS: hydroxymethylbilane synthase (deficiency causes acute intermittent porphyria) PPOX: protoporphyrinogen

    Heme

    Heme

    Heme

  • Uroporphyrinogen III
  • Chemical compound

    pathway, uroporphyrinogen III is derived from the linear tetrapyrrole hydroxymethylbilane by the action of the enzyme uroporphyrinogen-III synthase. This catalyses

    Uroporphyrinogen III

    Uroporphyrinogen III

    Uroporphyrinogen_III

  • Bilane
  • Chemical compound

    biosynthesis of all natural porphyrins proceeds through the bilane, hydroxymethylbilane, which is produced from four molecules of the monomer porphobilinogen

    Bilane

    Bilane

  • Vitamin B12
  • Vitamin used in animal cell metabolism

    cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate

    Vitamin B12

    Vitamin B12

    Vitamin_B12

  • Porphobilinogen
  • Intermediate in the biosynthesis of porphyrins

    porphobilinogen deaminase: 4   porphobilinogen   H2O 4 NH3       hydroxymethylbilane Acute intermittent porphyria causes an increase in urinary porphobilinogen

    Porphobilinogen

    Porphobilinogen

    Porphobilinogen

  • Uroporphyrinogen
  • synthesis of porphyrin, it is created from the linear tetrapyrrole hydroxymethylbilane by the enzyme uroporphyrinogen III synthase, and is further converted

    Uroporphyrinogen

    Uroporphyrinogen

  • List of EC numbers (EC 2)
  • 2.5.1.60: protein geranylgeranyltransferase type II EC 2.5.1.61: hydroxymethylbilane synthase EC 2.5.1.62: chlorophyll synthase EC 2.5.1.63: adenosyl-fluoride

    List of EC numbers (EC 2)

    List_of_EC_numbers_(EC_2)

  • Chromosome 11
  • Human chromosome

    pseudogene 1 HIKESHI: chromosome 11, open reading frame 73 HMBS: hydroxymethylbilane VIIA HRASLS3: adipose phospholipase A2 HTATIP2: HIV-1 Tat interactive

    Chromosome 11

    Chromosome 11

    Chromosome_11

  • List of EC numbers (EC 4)
  • 4.3.1.7: ethanolamine ammonia-lyase EC 4.3.1.8: Now EC 2.5.1.61, hydroxymethylbilane synthase EC 4.3.1.9: glucosaminate ammonia-lyase EC 4.3.1.10: serine-sulfate

    List of EC numbers (EC 4)

    List_of_EC_numbers_(EC_4)

  • Schinkia
  • Genus of Gram-positive bacteria

    protein, ammonia-forming cytochrome c nitrite reductase subunit c552, hydroxymethylbilane synthase, acetolactate synthase large subunit, hypothetical protein

    Schinkia

    Schinkia

  • Cobalamin biosynthesis
  • Chemical reactions and pathways

    cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate

    Cobalamin biosynthesis

    Cobalamin biosynthesis

    Cobalamin_biosynthesis

  • Protoporphyrinogen oxidase
  • Enzyme

    coproporphyrinogen oxidase FECH: ferrochelatase (protoporphyria) HMBS: hydroxymethylbilane synthase PPOX: protoporphyrinogen oxidase UROD: uroporphyrinogen

    Protoporphyrinogen oxidase

    Protoporphyrinogen oxidase

    Protoporphyrinogen_oxidase

  • Uroporphyrinogen I
  • Chemical compound

    linear tetrapyrrole precursor preuroporphyrinogen (a substituted hydroxymethylbilane) is converted by the enzyme uroporphyrinogen-III cosynthase into

    Uroporphyrinogen I

    Uroporphyrinogen I

    Uroporphyrinogen_I

  • List of compounds with carbon numbers 40–49
  • 13638-82-9 C40H44N4O16 uroporphyrinogen III 1976-85-8 C40H46N4O17 hydroxymethylbilane 73023-76-4 C40H48 isorenieratene 524-01-6 C40H49ClN8O12 microsclerodermin

    List of compounds with carbon numbers 40–49

    List_of_compounds_with_carbon_numbers_40–49

  • Chlorophyllide
  • Chemical compound

    cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate

    Chlorophyllide

    Chlorophyllide

    Chlorophyllide

  • Alan R. Battersby
  • English organic chemist (1925–2018)

    cosynthetase, in the steps from aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate

    Alan R. Battersby

    Alan R. Battersby

    Alan_R._Battersby

  • Dihydrosirohydrochlorin
  • Chemical compound

    cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate

    Dihydrosirohydrochlorin

    Dihydrosirohydrochlorin

    Dihydrosirohydrochlorin

  • Sirohydrochlorin
  • Chemical compound

    cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate

    Sirohydrochlorin

    Sirohydrochlorin

    Sirohydrochlorin

  • List of MeSH codes (D08)
  • 500.500 – glutathione S-transferase pi MeSH D08.811.913.225.575 – hydroxymethylbilane synthase MeSH D08.811.913.225.650 – methionine adenosyltransferase

    List of MeSH codes (D08)

    List_of_MeSH_codes_(D08)

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