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Grixazone synthase

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Involved in the biosynthesis of the parasiticide antibiotic grixazone. Catalyzes the oxidation of 3,4-aminohydroxybenzoate (3,4-AHBOA) to yield the corresponding quinone imine which is then non-enzymatically conjugated with the thiol group of N-acetylcysteine. The resultant compound is oxidized to its quinone imine enzymatically and is then dimerized non-enzymatically with another quinone imine oxidized by GriF to yield grixazone B. 3,4-aminohydroxybenzaldehyde (3,4-AHBAL) can also be used as substrate to yield grixazone A. In the grixazone biosynthetic pathway, it can also function as an o-aminophenol oxidase that catalyzes the formation of the phenoxazinone chromophore from alpha-aminophenol. It can also use 3,4-dihydroxybenzaldehyde, 2-amino-4-methylphenol and 3,4-dihydroxy-L-phenylalanine (L-DOPA) as substrates. In contrast to tyrosinases, it does not display monophenolase activity.

Below are the list of possible Grixazone synthase products. If you cannot find the target and/or product is not available in our catalog, please click here to contact us and request the product or submit your request for custom elisa kit production, custom recombinant protein production or custom antibody production. Custom ELISA Kits, Recombinant Proteins and Antibodies can be designed, manufactured and produced according to the researcher's specifications.
 

Grixazone synthase

 Grixazone synthase ELISA Kit
 Grixazone synthase Recombinant
 Grixazone synthase Antibody
Also known as Grixazone synthase (O-aminophenol oxidase) (Phenoxazinone synthase) (PHS).
Involved in the biosynthesis of the parasiticide antibiotic grixazone. Catalyzes the oxidation of 3,4-aminohydroxybenzoate (3,4-AHBOA) to yield the corresponding quinone imine which is then non-enzymatically conjugated with the thiol group of N-acetylcysteine. The resultant compound is oxidized to its quino
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ne imine enzymatically and is then dimerized non-enzymatically with another quinone imine oxidized by GriF to yield grixazone B. 3,4-aminohydroxybenzaldehyde (3,4-AHBAL) can also be used as substrate to yield grixazone A. In the grixazone biosynthetic pathway, it can also function as an o-aminophenol oxidase that catalyzes the formation of the phenoxazinone chromophore from alpha-aminophenol. It can also use 3,4-dihydroxybenzaldehyde, 2-amino-4-methylphenol and 3,4-dihydroxy-L-phenylalanine (L-DOPA) as substrates. In contrast to tyrosinases, it does not display monophenolase activity.
 griF ELISA Kit
 griF Recombinant
 griF Antibody
 SGR_4246 ELISA Kit
 SGR_4246 Recombinant
 SGR_4246 Antibody
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