4.1.1.4: acetoacetate decarboxylase
This is an abbreviated version!
For detailed information about acetoacetate decarboxylase, go to the full flat file.
Word Map on EC 4.1.1.4
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4.1.1.4
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clostridium
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acetobutylicum
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beijerinckii
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solventogenesis
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solventogenic
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thiolase
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isopropanol
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acetoacetyl-coa
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acetone-butanol-ethanol
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primary-secondary
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phosphotransbutyrylase
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solvent-producing
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acidogenic
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synthesis
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analysis
- 4.1.1.4
- clostridium
- acetobutylicum
- beijerinckii
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solventogenesis
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solventogenic
-
thiolase
- isopropanol
- acetoacetyl-coa
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acetone-butanol-ethanol
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primary-secondary
- phosphotransbutyrylase
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solvent-producing
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acidogenic
- synthesis
- analysis
Reaction
Synonyms
AAD, AADase, AADC, acetoacetic acid decarboxylase, Acetoacetic decarboxylase, ADC, CP 28/CP 29, Decarboxylase, acetoacetate, Polymyxin MI
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Substrates Products
Substrates Products on EC 4.1.1.4 - acetoacetate decarboxylase
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REACTION DIAGRAM
2-Oxo-3-phenylpropionic acid
Acetophenone + CO2
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i.e. phenylacetoacetate
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3-oxopentanoate + H+
2-butanone + CO2
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products are obtained when heptanoate and not octanoate, pentanoate, decanoate or nonanoate are used as a carbon source in cultures, non-enzymatic decarboxylation is not discarded
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induction by linear acids from C1 to C4, whereas branched acids and linear acids from C5 to C7 are not inducers
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Acetoacetate
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the enzyme is involved in the metabolic pathway of isopropanol
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acetoacetate + H+
acetone + CO2
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acetoacetate + H+
acetone + CO2
the AADC activity relies on measurement of CO2 produced as a result of AADC-catalyzed decarboxylation of acetoacetate
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acetoacetate + H+
acetone + CO2
the AADC activity relies on measurement of CO2 produced as a result of AADC-catalyzed decarboxylation of acetoacetate
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?
acetoacetate + H+
acetone + CO2
the AADC activity relies on measurement of CO2 produced as a result of AADC-catalyzed decarboxylation of acetoacetate
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catalyzes the exchange of deuterium or tritium into the alpha position of cyclohexanone or 2-butanone
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additional information
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acetoacetate decarboxylase from Clostridium acetobutylicum can act as a biocatalyst for decarboxylation of levulinic acid
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additional information
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acetoacetate decarboxylase from Clostridium acetobutylicum can act as a biocatalyst for decarboxylation of levulinic acid
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