4.2.1.51: prephenate dehydratase
This is an abbreviated version!
For detailed information about prephenate dehydratase, go to the full flat file.
Word Map on EC 4.2.1.51
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4.2.1.51
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l-phenylalanine
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arogenate
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l-tyrosine
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dahp
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l-phe
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7-phosphate
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cyclohexadienyl
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l-tyr
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3-deoxy-d-arabino-heptulosonate
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feedback-inhibited
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5.4.99.5
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synthesis
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industry
- 4.2.1.51
- l-phenylalanine
- arogenate
- l-tyrosine
- dahp
- l-phe
- 7-phosphate
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cyclohexadienyl
- l-tyr
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3-deoxy-d-arabino-heptulosonate
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feedback-inhibited
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5.4.99.5
- synthesis
- industry
Reaction
Synonyms
ADT1, ADT2, ADT6, AroQ, chorismate mutase prephenate dehydratase, chorismate mutase-prephenate dehydratase, Chorismate mutase/prephenate dehydratase, CM-PD, CM/PDT/PDHG, Cmut1, CM–PDT, Ct-PDT, cyclohexydienyl dehydratase, dehydratase, prephenate, Gmut11, Gmut9, MjPDT, monofunctional prephenate dehydratase, MtbPDT, P-protein, P-protein dehydratase, PDT, PDT protein, PheA, PpADT-B, PpADT-C, PpADT-G, prephenate dehydratase, prephenate dehydratase 1, Sa-PDT
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Natural Substrates Products
Natural Substrates Products on EC 4.2.1.51 - prephenate dehydratase
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REACTION DIAGRAM
prephenate
phenylpyruvate + H2O + CO2
activated G-protein Ga-subunit (GPA1) is directly responsible for the activation of PD1. GCR1, GPA1, and PD1 form all of or part of a signal transduction mechanism responsible for the light-mediated synthesis of phenylpyruvate, Phe, and those metabolites that derive from that Phe
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prephenate
phenylpyruvate + H2O + CO2
the enzyme is involved in aromatic amino acid biosynthesis
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prephenate
phenylpyruvate + H2O + CO2
involved in vivo production of high levels of phenylalanine
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prephenate
phenylpyruvate + H2O + CO2
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converts prephenate to phenylpyruvate in L-phenylalanine biosynthesis
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prephenate
phenylpyruvate + H2O + CO2
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enzyme is a key regulatory enzyme in the phenylalanine-specific pathway
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prephenate
phenylpyruvate + H2O + CO2
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enzyme is a key regulatory enzyme in the phenylalanine-specific pathway
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prephenate
phenylpyruvate + H2O + CO2
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involved in biosynthesis of L-phenylalanine
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prephenate
phenylpyruvate + H2O + CO2
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the enzyme is a bifunctional chorismate mutase/prephenate dehydratase which also possesses chorismate mutase activity, EC 5.4.99.5, and converts chorismate into prephenate, catalyzes the first to steps in the biosynthesis of L-Phe and L-Tyr
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prephenate
phenylpyruvate + H2O + CO2
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first enzyme in the phenylalanine biosynthesis branch of the biosynthetic pathway for aromatic amino acids
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prephenate
phenylpyruvate + H2O + CO2
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key regulator enzyme in L-phenylalanine biosynthesis
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prephenate
phenylpyruvate + H2O + CO2
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converts prephenate to phenylpyruvate in L-phenylalanine biosynthesis
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