1.97.1.9: selenate reductase
This is an abbreviated version!
For detailed information about selenate reductase, go to the full flat file.
Word Map on EC 1.97.1.9
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1.97.1.9
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nitrate
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selenium
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thauera
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molybdenum
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selenatis
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environmental protection
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molybdoenzymes
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cloacae
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twin-arginine
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ethylbenzene
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alphabetagamma
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molybdopterin-containing
- 1.97.1.9
- nitrate
- selenium
- thauera
- molybdenum
- selenatis
- environmental protection
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molybdoenzymes
- cloacae
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twin-arginine
- ethylbenzene
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alphabetagamma
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molybdopterin-containing
Reaction
Synonyms
BisC, More, selenate reductase, SER, serA, SerABC, SR, SrdA, SrdB, SrdC, YnfE
ECTree
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Substrates Products
Substrates Products on EC 1.97.1.9 - selenate reductase
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REACTION DIAGRAM
selenate + reduced cytc-Ts4
selenite + H2O + oxidized cytc-Ts4
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a c-type cytochrom is purified and shown to donate electrons to SerABC in vitro. Redox potentiometry, combined with UV-visible spectroscopy, show that cytc-Ts4 is a diheme cytochrome with a redox potential of +/-282 mV, and both hemes are predicted to have His-Met ligation
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-
?
selenate + reduced methyl viologen
selenite + H2O + methyl viologen
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-
-
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?
selenate + electron donor
selenite + H2O + oxidized donor
Enterobacter cloacae SLD1a-1 / ATCC 700258
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-
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?
selenite + H2O + oxidized electron donor
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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-
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
Enterobacter cloacae SLD1a-1 / ATCC 700258
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-
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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-
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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enzyme also reduces nitrate, thiosulfate, and fumarate
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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enzyme also reduces nitrate, thiosulfate, and fumarate
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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-
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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-
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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specific for selenate
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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specific for selenate
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
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selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenate + electron donor
selenite + H2O + oxidized electron donor
selenate is the terminal electron acceptor in dissimilatory selenate reduction
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?
selenite + H2O + acetate + HCO3-
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?
selenate + lactate
selenite + H2O + acetate + HCO3-
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?
selenate + lactate
selenite + H2O + acetate + HCO3-
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?
selenate + reduced acceptor
selenite + H2O + acceptor
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detoxification of selenate
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-
?
selenate + reduced acceptor
selenite + H2O + acceptor
Enterobacter cloacae SLD1a-1 / ATCC 700258
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detoxification of selenate
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-
?
selenate + reduced acceptor
selenite + H2O + acceptor
Enterobacter cloacae SLD1a-1 / ATCC 700258
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-
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?
selenate + reduced acceptor
selenite + H2O + acceptor
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?
selenate + reduced acceptor
selenite + H2O + acceptor
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?
selenate + reduced acceptor
selenite + H2O + acceptor
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?
selenate + reduced acceptor
selenite + H2O + acceptor
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?
selenite + H2O + benzyl viologen
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?
selenate + reduced benzyl viologen
selenite + H2O + benzyl viologen
Enterobacter cloacae SLD1a-1 / ATCC 700258
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-
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?
selenite + H2O + oxidized benzyl viologen
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?
selenate + reduced benzyl viologen
selenite + H2O + oxidized benzyl viologen
Enterobacter cloacae SLD1a-1 / ATCC 700258
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-
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?
selenate + reduced benzyl viologen
selenite + H2O + oxidized benzyl viologen
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?
selenate + reduced benzyl viologen
selenite + H2O + oxidized benzyl viologen
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best electron donor
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?
selenite + H2O + oxidized methyl viologen
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preferred electron donor
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?
selenate + reduced methyl viologen
selenite + H2O + oxidized methyl viologen
Enterobacter cloacae SLD1a-1 / ATCC 700258
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preferred electron donor
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?
selenate + reduced methyl viologen
selenite + H2O + oxidized methyl viologen
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?
selenate + reduced methyl viologen
selenite + H2O + oxidized methyl viologen
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-
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?
selenate + reduced methyl viologen
selenite + H2O + oxidized methyl viologen
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?
selenate + reduced methyl viologen
selenite + H2O + oxidized methyl viologen
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11% of the activity with benzyl viologen
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?
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
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?
additional information
?
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no substrate: nitrate, sulfate, perchlorate, thiosulfate
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?
additional information
?
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Enterobacter cloacae SLD1a-1 / ATCC 700258
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no substrate: nitrate, sulfate, perchlorate, thiosulfate
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?
additional information
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
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-
?
additional information
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
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?
additional information
?
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Gottschalkia acidurici ATCC 7906
the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
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-
?
additional information
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
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-
?
additional information
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
-
-
?
additional information
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
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?
additional information
?
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also active on nitrate, thiosulfate and fumarate
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?
additional information
?
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NADH, succinate, and lactate are no electron donors
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?
additional information
?
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no activity with nitrate, nitrite, sulfate, and chlorate
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?
additional information
?
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no activity with nitrate, nitrite, sulfate, and chlorate
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?
additional information
?
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the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
-
-
?
additional information
?
-
-
the organism is part of an enrichment of a bacterial assemblage from a mine impacted natural marsh sediment that is capable of simultaneous selenate reduction and denitrification, selenate reduction in selenate enrichment culture, SeRB, and selenate reduction in the presence of varying concentrations of nitrate, overview
-
-
?