Term Information

Feedback 
Accession
GO:0102772
Name
sphingolipid C4-monooxygenase activity
Ontology
molecular_function
Synonyms
sphingolipid long-chain base 4-hydroxylase activity
Alternate IDs
None
Definition
Catalysis of the reaction: a dihydroceramide + 2 Fe(II)-[cytochrome b5] + 2 H+ + O2 = a phytoceramide + 2 Fe(III)-[cytochrome b5] + H2O. Source: EC:1.14.18.5, GOC:pz
Comment
None
History
See term history for GO:0102772 at QuickGO
Chem. react.
has participant phytoceramide
has participant water
has participant iron(2+)
has participant hydron
has participant dihydroceramide
has participant iron(3+)
has participant dioxygen
Subset
None
Include "regulates"
For more information, please see the ontology relation documentation.

Filter results

Loading...
pending...
View this term in QuickGO.

Graph of GO:0102772 from QuickGO

Additional external viewing options
Additional internal viewing options
Parents of sphingolipid C4-monooxygenase activity (GO:0102772)
subject[Reorder by subject] relation[Reorder by relation] object[Reorder by object]
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  phytoceramide (CHEBI:139051)
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  water (CHEBI:15377)
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  iron(2+) (CHEBI:29033)
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  hydron (CHEBI:15378)
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  dihydroceramide (CHEBI:139048)
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  iron(3+) (CHEBI:29034)
sphingolipid C4-monooxygenase activity [is_a relation] is_a  oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, another compound as one donor, and incorporation of one atom of oxygen (GO:0016716)
sphingolipid C4-monooxygenase activity [RO:0000057 relation] RO:0000057  dioxygen (CHEBI:15379)

This term has no children.

EC
1.14.18.5
MetaCyc
RXN-14250
RHEA
55808