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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
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
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
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
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
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
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
Chemical compound
biosynthesis of all natural porphyrins proceeds through the bilane, hydroxymethylbilane, which is produced from four molecules of the monomer porphobilinogen
Bilane
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
Intermediate in the biosynthesis of porphyrins
porphobilinogen deaminase: 4 porphobilinogen H2O 4 NH3 hydroxymethylbilane Acute intermittent porphyria causes an increase in urinary porphobilinogen
Porphobilinogen
synthesis of porphyrin, it is created from the linear tetrapyrrole hydroxymethylbilane by the enzyme uroporphyrinogen III synthase, and is further converted
Uroporphyrinogen
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)
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
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)
Genus of Gram-positive bacteria
protein, ammonia-forming cytochrome c nitrite reductase subunit c552, hydroxymethylbilane synthase, acetolactate synthase large subunit, hypothetical protein
Schinkia
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
Enzyme
coproporphyrinogen oxidase FECH: ferrochelatase (protoporphyria) HMBS: hydroxymethylbilane synthase PPOX: protoporphyrinogen oxidase UROD: uroporphyrinogen
Protoporphyrinogen_oxidase
Chemical compound
linear tetrapyrrole precursor preuroporphyrinogen (a substituted hydroxymethylbilane) is converted by the enzyme uroporphyrinogen-III cosynthase into
Uroporphyrinogen_I
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
Chemical compound
cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate
Chlorophyllide
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
Chemical compound
cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate
Dihydrosirohydrochlorin
Chemical compound
cosynthetase which transform aminolevulinic acid via porphobilinogen and hydroxymethylbilane to uroporphyrinogen III. The latter is the first macrocyclic intermediate
Sirohydrochlorin
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)
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE
HYDROXYMETHYLBILANE