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Literature summary extracted from

  • Bentley, R.; Bhate, D.S.
    Mutarotase from Penicillium notatum. II. The mechanism of the mutarotase reaction (1960), J. Biol. Chem., 235, 1225-1232.
    View publication on PubMed

Organism

EC Number Organism UniProt Comment Textmining
5.1.3.3 Penicillium chrysogenum
-
-
-

Reaction

EC Number Reaction Comment Organism Reaction ID
5.1.3.3 alpha-D-glucose = beta-D-glucose reaction mechanism does not involve dehydration, any dehydrogenation reaction on carbon-bound hydrogen, or the hydrated derivative of glucose aldehyde, nor is a single displacement mechanism involved. The enzyme-catalyzed mutarotation is essentially similar to the spontaneous or acid catalyzed process. Mutarotase is an enzyme with a proton-transferring function #2# Penicillium chrysogenum

Substrates and Products (Substrate)

EC Number Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
5.1.3.3 alpha-D-galactose
-
Penicillium chrysogenum beta-D-galactose
-
?
5.1.3.3 alpha-D-glucose
-
Penicillium chrysogenum beta-D-glucose
-
?
5.1.3.3 alpha-D-Glycero-D-galactoheptopyranose
-
Penicillium chrysogenum beta-D-Glycero-D-galactoheptopyranose
-
?
5.1.3.3 alpha-D-xylose weak activity Penicillium chrysogenum beta-D-xylose
-
?
5.1.3.3 alpha-L-arabinose
-
Penicillium chrysogenum beta-L-arabinose
-
?
5.1.3.3 beta-D-Cellobiose cellobiose Penicillium chrysogenum ?
-
?
5.1.3.3 beta-Lactose no specification of anomeric form Penicillium chrysogenum alpha-Lactose
-
?
5.1.3.3 beta-Maltose maltose (s.o.) Penicillium chrysogenum alpha-Maltose
-
?