1.14.12.18: biphenyl 2,3-dioxygenase
This is an abbreviated version!
For detailed information about biphenyl 2,3-dioxygenase, go to the full flat file.
Word Map on EC 1.14.12.18
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1.14.12.18
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biphenyls
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polychlorinated
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pseudoalcaligenes
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xenovorans
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chlorobiphenyls
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dihydrodiols
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comamonas
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rieske-type
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testosteroni
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pcb-degrading
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bpdos
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pcb-contaminated
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yanoikuyae
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2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic
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2,3-dihydroxybiphenyls
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biphenyl-degrading
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cis-dihydrodiols
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globerulus
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ring-hydroxylating
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pnomenusa
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2,2\'-dichlorobiphenyl
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pandoraea
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polychlorobiphenyls
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biphenyl-utilizing
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synthesis
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beijerinckia
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chlorobenzoates
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biphenyl-induced
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2,2\',5,5\'-tetrachlorobiphenyl
- 1.14.12.18
- biphenyls
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polychlorinated
- pseudoalcaligenes
- xenovorans
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chlorobiphenyls
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dihydrodiols
- comamonas
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rieske-type
- testosteroni
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pcb-degrading
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bpdos
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pcb-contaminated
- yanoikuyae
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2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic
- 2,3-dihydroxybiphenyls
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biphenyl-degrading
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cis-dihydrodiols
- globerulus
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ring-hydroxylating
- pnomenusa
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2,2\'-dichlorobiphenyl
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pandoraea
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polychlorobiphenyls
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biphenyl-utilizing
- synthesis
- beijerinckia
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chlorobenzoates
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biphenyl-induced
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2,2\',5,5\'-tetrachlorobiphenyl
Reaction
Synonyms
2,3-biphenyl dioxygenase, BDO, biphenyl 2, 3-dioxygenase, Biphenyl 2,3-dioxygenase, biphenyl dioxygenase, biphenyl-2,3-dioxygenase, BPDO, BPDOB356, BPDOCam-1, BPDOLB400, BPH, BPH dox, BphA, BphA1, BphA1A2, BphABC, BphABCD, BphAE, BPO, ThebphA1fA2f
ECTree
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Expression
Expression on EC 1.14.12.18 - biphenyl 2,3-dioxygenase
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bph gene cluster bphAaAbAcAdCB is localized on the linear plasmid pRHL1, which is followed by bphS and bphT genes which encode a two-component signal transduction system composed of a BphT response regulator and a BpdS sensor kinase and promote transcriptional induction by aromatic compounds biphenyl, benzene, alkylbenzene and chlorinated benzene
exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
exposure to polychlorinated biphenyl and Aroclor 1242 results in a marked increase of two out of the four BPH genes. Exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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bph gene cluster bphAaAbAcAdCB is localized on the linear plasmid pRHL1, which is followed by bphS and bphT genes which encode a two-component signal transduction system composed of a BphT response regulator and a BpdS sensor kinase and promote transcriptional induction by aromatic compounds biphenyl, benzene, alkylbenzene and chlorinated benzene
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bph gene cluster bphAaAbAcAdCB is localized on the linear plasmid pRHL1, which is followed by bphS and bphT genes which encode a two-component signal transduction system composed of a BphT response regulator and a BpdS sensor kinase and promote transcriptional induction by aromatic compounds biphenyl, benzene, alkylbenzene and chlorinated benzene
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
Pseudomonas oleovorans KF707
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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exposure of soil microcosms to different polychlorinated biphenyl congeners results in different expression patterns of biphenyl dioxygenase genes
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