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IUBMB Comments The enzyme from the bacterium Escherichia coli also has the activity of EC 2.3.1.223 (3-oxo-5,6-dehydrosuberyl-CoA thiolase).
The expected taxonomic range for this enzyme is: Bacteria, Eukaryota, Archaea
Synonyms 3-oxoadipyl-coa thiolase, more
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mmlC
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mmlC
gene encoding for a 3-oxoadipyl-CoA thiolase
OCT1
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succinyl-CoA + acetyl-CoA = CoA + 3-oxoadipyl-CoA
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Acyl group transfer
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Acyl group transfer
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MetaCyc
3-oxoadipate degradation, 4-methylcatechol degradation (ortho cleavage), adipate biosynthesis, adipate degradation, benzoyl-CoA degradation I (aerobic), phenylacetate degradation I (aerobic)
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succinyl-CoA:acetyl-CoA C-succinyltransferase
The enzyme from the bacterium Escherichia coli also has the activity of EC 2.3.1.223 (3-oxo-5,6-dehydrosuberyl-CoA thiolase).
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4-methyl-3-oxoadipyl-CoA + CoA
methylsuccinyl-CoA + acetyl-CoA
Substrates: - Products: -
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CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
CoA + oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: - Products: -
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CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: 3-oxoadipyl-CoA thiolase carries out the ultimate step in the conversion of benzoate and 3-chlorobenzoate to tricarboxylic acid cycle intermediates Products: -
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CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: 3-oxoadipyl-CoA thiolase carries out the ultimate step in the conversion of benzoate and 3-chlorobenzoate to tricarboxylic acid cycle intermediates Products: -
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CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: - Products: -
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CoA + oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: - Products: -
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CoA + oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: - Products: -
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4-methyl-3-oxoadipyl-CoA + CoA
methylsuccinyl-CoA + acetyl-CoA
Substrates: - Products: -
?
CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
-
Substrates: 3-oxoadipyl-CoA thiolase carries out the ultimate step in the conversion of benzoate and 3-chlorobenzoate to tricarboxylic acid cycle intermediates Products: -
?
CoA + 3-oxoadipyl-CoA
succinyl-CoA + acetyl-CoA
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Substrates: 3-oxoadipyl-CoA thiolase carries out the ultimate step in the conversion of benzoate and 3-chlorobenzoate to tricarboxylic acid cycle intermediates Products: -
?
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CuSO4
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1 mM, 90% inhibition
NaCN
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1 mM, 12% inhibition
NADH
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10% inhibition with 0.4 mM, 42% inhibition by 0.8 mM
ZnCl2
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1 mM, 46% inhibition
additional information
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1 mM EDTA or 1,10-phenanthroline have no effect
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brenda
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TREMBL
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Highest Expressing Human Cell Lines
Filter by:
Cell Line Links
Gene Links
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metabolism
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the enzyme is involed in the 3-oxoadipate pathway
metabolism
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the enzyme is involed in the 3-oxoadipate pathway
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41678
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x * 41678, calculation from nucleotide sequence
42000
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4 * 42000, SDS-PAGE
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x * 41678, calculation from nucleotide sequence
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x * 41678, calculation from nucleotide sequence
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tetramer
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4 * 42000, SDS-PAGE
tetramer
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4 * 42000, SDS-PAGE
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additional information
generation of a mmlC knockout strain
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Gobel, M.; Kassel-Cati, K.; Schmidt, E.; Reineke, W.
Degradation of aromatics and chloroaromatics by Pseudomonas sp. strain B13: cloning, characterization, and analysis of sequences encoding 3-oxoadipate:succinyl-coenzyme A (CoA) transferase and 3-oxoadipyl-CoA thiolase
J. Bacteriol.
184
216-223
2002
Pseudomonas sp., Pseudomonas sp. B13
brenda
Kaschabek, S.R.; Kuhn, B.; Muller, D.; Schmidt, E.; Reineke, W.
Degradation of aromatics and chloroaromatics by Pseudomonas sp. strain B13: purification and characterization of 3-oxoadipate:succinyl-coenzyme A (CoA) transferase and 3-oxoadipyl-CoA thiolase
J. Bacteriol.
184
207-215
2002
Pseudomonas sp., Pseudomonas sp. B13
brenda
Marin, M.; Perez-Pantoja, D.; Donoso, R.; Wray, V.; Gonzalez, B.; Pieper, D.H.
Modified 3-oxoadipate pathway for the biodegradation of methylaromatics in Pseudomonas reinekei MT1
J. Bacteriol.
192
1543-1552
2010
Pseudomonas reinekei (D2I940)
brenda
Zeman, I.; Nebohacova, M.; Gerecova, G.; Katonova, K.; Janosikova, E.; Jakubkova, M.; Centarova, I.; Dunckova, I.; Tomaska, L.; Pryszcz, L.P.; Gabaldon, T.; Nosek, J.
Mitochondrial carriers link the catabolism of hydroxyaromatic compounds to the central metabolism in Candida parapsilosis
G3 (Bethesda)
6
4047-4058
2016
Candida parapsilosis, Candida parapsilosis CLIB214
brenda
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