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4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
4-hydroxybenzoyl-CoA + reduced electron donor
benzoyl-CoA + oxidized electron donor + H2O
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized electron donor + H2O
4-hydroxybenzoyl-CoA + reduced electron donor
benzoyl-CoA + oxidized ferredoxin + H2O
4-hydroxybenzoyl-CoA + reduced ferredoxin
protocatechuyl-CoA + oxidized ferredoxin + H2O
3-hydroxybenzoyl-CoA + reduced ferredoxin
-
Substrates: -
Products: -
-
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: -
Products: -
ir
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: -
Products: -
ir
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: -
Products: -
ir
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: -
Products: -
ir
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: -
Products: -
ir
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: -
Products: -
ir
4-hydroxybenzoyl-CoA + acceptor
benzoyl-CoA + reduced acceptor
-
Substrates: a Birch-like reduction by means of radical intermediates
Products: -
?
benzoyl-CoA + oxidized electron donor + H2O
4-hydroxybenzoyl-CoA + reduced electron donor
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized electron donor + H2O
4-hydroxybenzoyl-CoA + reduced electron donor
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized ferredoxin + H2O
4-hydroxybenzoyl-CoA + reduced ferredoxin
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized ferredoxin + H2O
4-hydroxybenzoyl-CoA + reduced ferredoxin
-
Substrates: -
Products: -
?
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
4-hydroxybenzoyl-CoA + reduced electron donor
benzoyl-CoA + oxidized electron donor + H2O
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized electron donor + H2O
4-hydroxybenzoyl-CoA + reduced electron donor
benzoyl-CoA + oxidized ferredoxin + H2O
4-hydroxybenzoyl-CoA + reduced ferredoxin
protocatechuyl-CoA + oxidized ferredoxin + H2O
3-hydroxybenzoyl-CoA + reduced ferredoxin
-
Substrates: -
Products: -
-
benzoyl-CoA + oxidized electron donor + H2O
4-hydroxybenzoyl-CoA + reduced electron donor
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized electron donor + H2O
4-hydroxybenzoyl-CoA + reduced electron donor
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized ferredoxin + H2O
4-hydroxybenzoyl-CoA + reduced ferredoxin
-
Substrates: -
Products: -
?
benzoyl-CoA + oxidized ferredoxin + H2O
4-hydroxybenzoyl-CoA + reduced ferredoxin
-
Substrates: -
Products: -
?
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
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75000
-
alpha,beta,gamma, 2 * 75000 + 2 * 35000 + 2 * 17000, SDS-PAGE
82000
-
alpha,beta,gamma, 2 * 82000 + 2 * 35000 + 2 * 17000, in vitro translation experiments
85000
-
1 * 85000, alpha-subunit, 1 * 35000, beta-subunit, 1 * 17000, gamma-subunit
17000
-
alpha,beta,gamma, 2 * 75000 + 2 * 35000 + 2 * 17000, SDS-PAGE
17000
-
alpha,beta,gamma, 2 * 82000 + 2 * 35000 + 2 * 17000, in vitro translation experiments
17000
-
1 * 85000, alpha-subunit, 1 * 35000, beta-subunit, 1 * 17000, gamma-subunit
260000
-
gel filtration
35000
-
alpha,beta,gamma, 2 * 75000 + 2 * 35000 + 2 * 17000, SDS-PAGE
35000
-
alpha,beta,gamma, 2 * 82000 + 2 * 35000 + 2 * 17000, in vitro translation experiments
35000
-
1 * 85000, alpha-subunit, 1 * 35000, beta-subunit, 1 * 17000, gamma-subunit
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trimer
-
1 * 85000, alpha-subunit, 1 * 35000, beta-subunit, 1 * 17000, gamma-subunit
hexamer
-
alpha,beta,gamma, 2 * 75000 + 2 * 35000 + 2 * 17000, SDS-PAGE
hexamer
-
alpha,beta,gamma, 2 * 75000 + 2 * 35000 + 2 * 17000, SDS-PAGE
-
hexamer
-
alpha,beta,gamma, 2 * 82000 + 2 * 35000 + 2 * 17000, in vitro translation experiments
hexamer
-
2 * alpha, molybdopterin protein, + 2 * beta, containing one FAD molecule and one 4Fe-4S cluster each, + 2 * gamma subunit, containing two 2Fe-2s clusters, crystallization data
oligomer
-
(alphabetagamma)2 subunit architecture
oligomer
-
(alphabetagamma)2 subunit architecture
-
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Glockler, R.; Tschech, A.; Fuchs, G.
Reductive dehydroxylation of 4-hydroxybenzoyl-CoA to benzoyl-CoA in a denitrifying, phenol-degrading Pseudomonas species
FEBS Lett.
251
237-240
1989
Pseudomonas sp., Pseudomonas sp. K172
brenda
Heider, J.; Boll, M.; Breese, K.; Breinig, S.; Ebenau-Jehle, C.; Feil, U.; Gad'on, N.; Laempe, D.; Leuthner, B.; Mohamed, M.E.S.; Schneider, S.; Burchhardt, G.; Fuchs, G.
Differential induction of enzymes involved in anaerobic metabolism of aromatic compounds in the denitrifying bacterium Thauera aromatica
Arch. Microbiol.
170
120-131
1998
Thauera aromatica
brenda
Breese, K.; Fuchs, G.
4-Hydroxybenzoyl-CoA reductase (dehydroxylating) from the denitrifying bacterium Thauera aromatica - prosthetic groups, electron donor, and genes of a member of the molybdenum-flavin-iron-sulfur proteins
Eur. J. Biochem.
251
916-923
1998
Thauera aromatica
brenda
Brackmann, R.; Fuchs, G.
Enzymes of anaerobic metabolism of phenolic compounds. 4-Hydroxybenzoyl-CoA reductase (dehydroxylating) from a denitrifying Pseudomonas species
Eur. J. Biochem.
213
563-571
1993
Pseudomonas sp., Pseudomonas sp. K172
brenda
Gibson, J.; Dispensa, M.; Harwood, C.S.
4-Hydroxybenzoyl coenzyme A reductase (dehydroxylating) is required for anaerobic degradation of 4-hydroxybenzoate by Rhodopseudomonas palustris and shares features with molybdenum-containing hydroxylases
J. Bacteriol.
179
634-642
1997
Rhodopseudomonas palustris
brenda
El Kasmi, A.; Brachmann, R.; Fuchs, G.; Ragsdale, S.W.
Hydroxybenzoyl-CoA reductase: coupling kinetics and electrochemistry to derive enzyme mechanisms
Biochemistry
34
11668-11677
1995
Pseudomonas sp.
brenda
Gallert, C.; Winter, J.
Anaerobic degradation of 4-hydroxybenzoate: reductive dehydroxylation of 4-hydroxybenzoyl-CoA and ATP formation during 4-hydroxybenzoate decarboxylation by the phenol-metabolizing bacteria of a stable, strictly anaerobic consortium
Appl. Microbiol. Biotechnol.
42
408-414
1994
Desulfovibrio sp., Methanospirillum hungatei
-
brenda
Unciuleac, M.; Boll, M.; Warkentin, E.; Ermler, U.
Crystallization of 4-hydroxybenzoyl-CoA reductase and the structure of its electron donor ferredoxin
Acta Crystallogr. Sect. D
60
388-391
2004
Thauera aromatica
brenda
Boll, M.; Fuchs, G.; Meier, C.; Trautwein, A.; El Kasmi, A.; Ragsdale, S.W.; Buchanan, G.; Lowe, D.J.
Redox centers of 4-hydroxybenzoyl-CoA reductase, a member of the xanthine oxidase family of molybdenum-containing enzymes
J. Biol. Chem.
276
47853-47862
2001
Thauera aromatica
brenda
Unciuleac, M.; Warkentin, E.; Page, C.C.; Boll, M.; Ermler, U.
Structure of a xanthine oxidase-related 4-hydroxybenzoyl-CoA reductase with an additional [4Fe-4S] cluster and an inverted electron flow
Structure
12
2249-2256
2004
Thauera aromatica
brenda
Boll, M.
Key enzymes in the anaerobic aromatic metabolism catalysing Birch-like reductions
Biochim. Biophys. Acta
1707
34-50
2005
Magnetospirillum magnetotacticum, Rhodopseudomonas palustris, Thauera aromatica
brenda
Boll, M.; Schink, B.; Messerschmidt, A.; Kroneck, P.M.H.
Novel bacterial molybdenum and tungsten enzymes: three-dimensional structure, spectroscopy, and reaction mechanism
Biol. Chem.
386
999-1006
2005
Azoarcus sp., Azoarcus sp. EbN1, Magnetospirillum magnetotacticum, Rhodopseudomonas palustris, Thauera aromatica
brenda
Johannes, J.; Unciuleac, M.C.; Friedrich, T.; Warkentin, E.; Ermler, U.; Boll, M.
Inhibitors of the molybdenum cofactor containing 4-hydroxybenzoyl-CoA reductase
Biochemistry
47
4964-4972
2008
Thauera aromatica, Thauera aromatica K172
brenda
Xie, X.; Mller, N.
Enzymes involved in the anaerobic degradation of phenol by the sulfate-reducing bacterium Desulfatiglans anilini
BMC Microbiol.
18
93
2018
Desulfatiglans anilini
brenda
Heider, J.; Fuchs, G.
Anaerobic metabolism of aromatic compounds
Eur. J. Biochem.
243
577-596
1997
Thauera aromatica
brenda
Ding, B.; Schmeling, S.; Fuchs, G.
Anaerobic metabolism of catechol by the denitrifying bacterium Thauera aromatica - a result of promiscuous enzymes and regulators?
J. Bacteriol.
190
1620-1630
2008
Thauera aromatica
brenda
Xie, X.; Spiteller, D.; Huhn, T.; Schink, B.; Mueller, N.
Desulfatiglans anilini initiates degradation of aniline with the production of phenylphosphoamidate and 4-aminobenzoate as intermediates through synthases and carboxylases from different gene clusters
Front. Microbiol.
11
2064
2020
Desulfatiglans anilini
brenda