1.14.12.13: 2-halobenzoate 1,2-dioxygenase
This is an abbreviated version!
For detailed information about 2-halobenzoate 1,2-dioxygenase, go to the full flat file.
Word Map on EC 1.14.12.13
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1.14.12.13
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cepacia
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catechol
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chlorobenzoates
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burkholderia
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toluate
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chlorocatechols
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biphenyls
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rieske-type
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cupriavidus
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ortho-cleavage
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cydab
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regiospecificity
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necator
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polychlorinated
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quinol
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4-chlorocatechol
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benabc
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tn5-based
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monochlorobiphenyls
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2,4-dichlorobenzoate
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aroclor
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cis,cis-muconate
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co-oxidize
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minitransposon
- 1.14.12.13
- cepacia
- catechol
- chlorobenzoates
- burkholderia
- toluate
- chlorocatechols
- biphenyls
-
rieske-type
-
cupriavidus
-
ortho-cleavage
- cydab
-
regiospecificity
- necator
-
polychlorinated
- quinol
- 4-chlorocatechol
- benabc
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tn5-based
-
monochlorobiphenyls
- 2,4-dichlorobenzoate
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aroclor
- cis,cis-muconate
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co-oxidize
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minitransposon
Reaction
Synonyms
(chloro)benzoate dioxygenase, 2-chlorobenzoate 1,2-dioxygenase, 2-halobenzoate 1,2-dioxygenase, 2-halobenzoate dioxygenase, 2-halobenzoate dioxygenase system, BenA, CbdAB, cbdABC
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Reaction
Reaction on EC 1.14.12.13 - 2-halobenzoate 1,2-dioxygenase
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broad substrate specificity, ability to transform all 3 monochlorobenzoates almost equally well. Enzyme appears to lack absolute regioselectivity
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2-chlorobenzoate + NADH + H+ + O2 = catechol + chloride + NAD+ + CO2
two-component nonheme iron dioxygenase system of oxygenase system class IB dioxygenase: NADH:acceptor reductase containing both FAD and cloroplast-type 2Fe-2S and Rieske-type 2Fe-2S-containing oxygenase component
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2-chlorobenzoate + NADH + H+ + O2 = catechol + chloride + NAD+ + CO2
inducible two-component enzyme system: component B is an iron-sulfur flavoprotein (reductase) and red-brown component A (oxygenase) is an iron-sulfur protein
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2-chlorobenzoate + NADH + H+ + O2 = catechol + chloride + NAD+ + CO2
multi-component dioxygenase system proposed: 1,2-hydroxylating, dehalogenating, decarboxylating
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2-chlorobenzoate + NADH + H+ + O2 = catechol + chloride + NAD+ + CO2
EPR, electron spin echo envelope modulation, electron nuclear double resonance studies and the electrochemical potential are performed. Enzyme contains one ferredoxin-type (reductase) and one Rieske-type (oxygenase) 2Fe2S center
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2-chlorobenzoate + NADH + H+ + O2 = catechol + chloride + NAD+ + CO2
broad substrate specificity, ability to transform all 3 monochlorobenzoates almost equally well. Enzyme appears to lack absolute regioselectivity
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