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3,5-dichlorocatechol + O2
(2E,4E)-2,4-dichlorohexa-2,4-dienedioate
3-chloro-5-methylcatechol + O2
2-chloro-4-methylhexa-2,4-dienedioate
4-methylcatechol + O2
(2Z,4Z)-3-methylhexa-2,4-dienedioate
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4-methylcatechol + O2
3-methyl-cis,cis-hexadienedioate
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4-methylcatechol + O2
3-methylhexa-2,4-dienedioate
catechol + O2
cis,cis-muconate
additional information
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3,5-dichlorocatechol + O2
(2E,4E)-2,4-dichlorohexa-2,4-dienedioate
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reaction catalyzed by catechol 1,2-dioxygenase type II
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3,5-dichlorocatechol + O2
(2E,4E)-2,4-dichlorohexa-2,4-dienedioate
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reaction catalyzed by catechol 1,2-dioxygenase type II
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3-chloro-5-methylcatechol + O2
2-chloro-4-methylhexa-2,4-dienedioate
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reaction catalyzed by catechol 1,2-dioxygenase type II
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3-chloro-5-methylcatechol + O2
2-chloro-4-methylhexa-2,4-dienedioate
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reaction catalyzed by catechol 1,2-dioxygenase type II
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4-methylcatechol + O2
3-methylhexa-2,4-dienedioate
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reaction catalyzed by catechol 1,2-dioxygenase type I and type II
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4-methylcatechol + O2
3-methylhexa-2,4-dienedioate
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reaction catalyzed by catechol 1,2-dioxygenase type I and type II
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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100% activity
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
both catechol dioxygenases, CatA1 and CatA2 are produced in benzoate-grown cells, CatA1 is undetectable when strain TH2 is grown on 2-chlorobenzoate or cis,cis-muconate. Production of CatA1 during growth on 2-chlorobenzoate or cis,cis-muconate is observed when cat2 genes are disrupted. The inducer of Cat1 is benzoate. cis,cis-Muconate or its metabolite acts as an inducer for CatA2. Genes are not indispensable for growth of strain TH2 on 2-chlorobenzoate, they are advantageous
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catechol + O2
cis,cis-muconate
both catechol dioxygenases, CatA1 and CatA2 are produced in benzoate-grown cells, CatA1 is undetectable when strain TH2 is grown on 2-chlorobenzoate or cis,cis-muconate. Production of CatA1 during growth on 2-chlorobenzoate or cis,cis-muconate is observed when cat2 genes are disrupted. The inducer of Cat1 is benzoate. cis,cis-Muconate or its metabolite acts as an inducer for CatA2. Genes are not indispensable for growth of strain TH2 on 2-chlorobenzoate, they are advantageous
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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reaction catalyzed by catechol 1,2-dioxygenase type I
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catechol + O2
cis,cis-muconate
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reaction catalyzed by catechol 1,2-dioxygenase type I
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catechol + O2
cis,cis-muconate
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catechol 1,2-dioxygenase activity is induced eightfold in cultures grown on salicylate compared to cultures grown on glucose
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catechol + O2
cis,cis-muconate
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catechol 1,2-dioxygenase activity is induced eightfold in cultures grown on salicylate compared to cultures grown on glucose
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catechol + O2
cis,cis-muconate
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the enzyme is involved in the catabolic pathway of L-tryptophan degradation, overview
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol is an intermediate of the indole-3-acetic acid catabolic pathway, overview
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catechol + O2
cis,cis-muconate
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benzoate degadation pathway
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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the enzyme is involved in the biodegradation of benzothiazole
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catechol + O2
cis,cis-muconate
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the enzyme is involved in the biodegradation of benzothiazole
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
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catechol + O2
cis,cis-muconate
Stutzerimonas stutzeri
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catechol + O2
cis,cis-muconate
Stutzerimonas stutzeri GOM2
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inducible on benzamide, not on L-malate
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inducible on benzamide, not on L-malate
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inducible on aniline, not on L-malate
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additional information
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inducible on aniline, not on L-malate
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the enzyme is involved in degradation of 4-chlorobenzenesulfonic acid, 4CBSA, the major polar by-product of the chemical synthesis of 1,1,1-trichloro-2,2-bis-(4-chlorophenyl) ethane, DDT, overview, 4-chlorobenzenesulfonic acid catabolic pathway, overview
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catechol 1,2-dioxygenase is induced by benzoate
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catechol 1,2-dioxygenase is induced by benzoate
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inducible on aniline, not on L-malate
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additional information
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inducible on aniline, not on L-malate
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additional information
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the enzyme is involved in the aerobic biodegradation of chloroaromatic compounds
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the enzyme is involved in the aerobic biodegradation of chloroaromatic compounds
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the enzyme is involved in the aerobic biodegradation of chloroaromatic compounds
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additional information
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the enzyme is involved in the aerobic biodegradation of chloroaromatic compounds
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synthesized constitutively. When the bacterium is incubated on a medium with D-glucose, L-malate, isoleucine, leucine, etc., it synthesizes more catechol 1,2-dioxygenase than that in cells grown on aniline
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strain KB2 degrades 13 mM 3,4-dihydroxybenzoate, 10 mM benzoic acid and 12 mM phenol within 24 h of incubation
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strain KB2 degrades 13 mM 3,4-dihydroxybenzoate, 10 mM benzoic acid and 12 mM phenol within 24 h of incubation
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