Cannabidiolic acid synthase
|Cannabidiolic acid synthase|
|PDB structures||RCSB PDB PDBe PDBsum|
Cannabidiolic acid synthase (EC 188.8.131.52, CBDA synthase) is an enzyme with systematic name cannabigerolate:oxygen oxidoreductase (cyclizing, cannabidiolate-forming). It is an oxidoreductase found in Cannabis sativa that catalyses the formation of cannabidiolate, a carboxylated precursor of cannabidiol.
Cannabidiolic acid synthase consists of a single protein with a molecular mass of 74 kDa. Its amino acid sequence is partly (40-50%) homologous to several other oxidoreductases, such as berberine bridge enzyme in Eschscholzia californica and Nectarin V in Nicotiana langsdorffii X N. sanderae.
Cannabidiolic acid synthase catalyses the production of cannabidiolate predominantly from cannabigerolate by stereospecific oxidative cyclization of the geranyl group of cannabigerolic acid according to the following chemical reaction:
Cannabinerolate can also be used as a substrate, but with lower efficiency (KM=0.137 mM) than cannabigerolate (KM=0.206 mM). It covalently binds FAD, and does not require coenzymes, molecular oxygen, hydrogen peroxide, or metal ion cofactors for the oxidocyclization reaction.
The optimum pH for CBDA synthase is 5.0.
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- “CBDAS – Cannabidiolic acid synthase precursor – Cannabis sativa (Hemp) – CBDAS gene & protein”. UniProt. Retrieved 26 February 2016.