Entry |
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Name |
Chloroalkane and chloroalkene degradation |
Class |
Metabolism; Xenobiotics biodegradation and metabolism
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Pathway map |
rn00625 | Chloroalkane and chloroalkene degradation |

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Other DBs |
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Reaction |
R00603 | dichloromethane chloride-lyase (adding H2O; chloride-hydrolysing; formaldehyde-forming) |
R00604 | formaldehyde:NAD+ oxidoreductase |
R00614 | formaldehyde:formaldehyde oxidoreductase |
R05233 | trans-3-chloro-2-propene-1-ol:NAD+ oxidoreductase |
R05234 | cis-3-chloro-2-propene-1-ol:NAD+ oxidoreductase |
R05284 | 1,2-dichloroethane halidohydrolase |
R05285 | 2-chloroethanol:cytochrome c oxidoreductase |
R05286 | chloroacetaldehyde:NAD+ oxidoreductase |
R05287 | chloroacetic acid halidohydrolase |
R05367 | trans-1,3-dichloropropene chlorohydrolase |
R05368 | cis-1,3-dichloropropene chlorohydrolase |
R05371 | trans-3-chloroacrylic acid chlorohydrolase |
R05372 | cis-3-chloroacrylic acid chlorohydrolase |
R05380 | acetaldehyde hydro-lyase |
R05496 | reduced ferredoxin:acetylene oxidoreductase (ATP-hydrolysing) |
R05842 | ethylene oxide hydrolase |
R06973 | 3-oxopropanoate carboxy-lyase |
R09128 | 2-chloroethanol:cytochrome c oxidoreductase |
R09151 | trichloroethene,NADH:oxygen oxidoreductase (glyoxylate-forming) |
R09152 | trichloroethene,NADH:oxygen oxidoreductase (formate-forming) |
R09156 | chloroethane,donor:oxygen oxidoreductase (dechlorinating, acetaldehyde-forming) |
R11897 | 2-hydroxyethyl-CoM:2-mercaptoethanesulfonate lyase (epoxyalkane-ring-forming) |
R11899 | 2-chloro-2-hydroxyethyl-CoM:2-mercaptoethanesulfonate lyase (epoxyalkane-ring-forming) |
R11901 | chloroethylene,NADH:oxygen oxidoreductase |
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Compound |
C06609 | trans-1,3-Dichloropropene |
C06610 | cis-1,3-Dichloropropene |
C06611 | trans-3-Chloro-2-propene-1-ol |
C06612 | cis-3-Chloro-2-propene-1-ol |
C06613 | trans-3-Chloroallyl aldehyde |
C06614 | trans-3-Chloroacrylic acid |
C06615 | cis-3-Chloroacrylic acid |
C06791 | trans-1,2-Dichloroethene |
C16348 | cis-3-Chloroallyl aldehyde |
C21753 | 2-Chloro-2-hydroxyethyl-CoM |
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Reference |
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Authors |
Muller JA, Rosner BM, Von Abendroth G, Meshulam-Simon G, McCarty PL, Spormann AM. |
Title |
Molecular identification of the catabolic vinyl chloride reductase from Dehalococcoides sp. strain VS and its environmental distribution. |
Journal |
|
Reference |
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Authors |
Lee PK, Johnson DR, Holmes VF, He J, Alvarez-Cohen L. |
Title |
Reductive dehalogenase gene expression as a biomarker for physiological activity of Dehalococcoides spp. |
Journal |
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Reference |
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Authors |
Torz M, Beschkov V |
Title |
Biodegradation of monochloroacetic acid used as a sole carbon and energy source by Xanthobacter autotrophicus GJ10 strain in batch and continuous culture. |
Journal |
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Reference |
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Authors |
Hage JC, Hartmans S |
Title |
Monooxygenase-mediated 1,2-dichloroethane degradation by Pseudomonas sp. strain DCA1. |
Journal |
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Reference |
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Authors |
Poelarends GJ, Wilkens M, Larkin MJ, van Elsas JD, Janssen DB. |
Title |
Degradation of 1,3-dichloropropene by pseudomonas cichorii 170. |
Journal |
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Reference |
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Authors |
Sun B, Griffin BM, Ayala-del-Rio HL, Hashsham SA, Tiedje JM |
Title |
Microbial dehalorespiration with 1,1,1-trichloroethane. |
Journal |
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Reference |
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Authors |
Hashimoto A, Iwasaki K, Nakasugi N, Nakajima M, Yagi O |
Title |
Degradation pathways of trichloroethylene and 1,1,1-trichloroethane by Mycobacterium sp. TA27. |
Journal |
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Reference |
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Authors |
Newman LM, Wackett LP |
Title |
Fate of 2,2,2-trichloroacetaldehyde (chloral hydrate) produced during trichloroethylene oxidation by methanotrophs. |
Journal |
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Reference |
|
Authors |
Newman LM, Wackett LP |
Title |
Trichloroethylene oxidation by purified toluene 2-monooxygenase: products, kinetics, and turnover-dependent inactivation. |
Journal |
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Related pathway |
rn00630 | Glyoxylate and dicarboxylate metabolism |
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KO pathway |
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