1.7.1.1: nitrate reductase (NADH)
This is an abbreviated version!
For detailed information about nitrate reductase (NADH), go to the full flat file.
Word Map on EC 1.7.1.1
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1.7.1.1
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seedling
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molybdenum
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chlorophyll
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shoot
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biomass
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reductases
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denitrification
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ammonia
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neurospora
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denitrify
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maize
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chlorate
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alga
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tungstate
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crassa
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chlorella
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nidulans
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barley
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fumarate
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xanthine
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spinach
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urease
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nitrogenase
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dissimilatory
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viologen
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stomatal
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molybdate
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molybdoenzymes
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hydroponic
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chlamydomonas
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foliar
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molybdopterin
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gogat
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napa
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n2o
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nitrous
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isoniazid
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denitrificans
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paracoccus
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griess
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kno3
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mycorrhizal
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transpiration
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plumbaginifolia
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tungsten
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anammox
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ethambutol
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sausage
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6.3.1.2
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dinitrogen
- 1.7.1.1
- seedling
- molybdenum
- chlorophyll
- shoot
- biomass
- reductases
-
denitrification
- ammonia
- neurospora
-
denitrify
- maize
- chlorate
- alga
- tungstate
- crassa
- chlorella
- nidulans
- barley
- fumarate
- xanthine
- spinach
- urease
- nitrogenase
-
dissimilatory
- viologen
-
stomatal
- molybdate
-
molybdoenzymes
-
hydroponic
- chlamydomonas
-
foliar
- molybdopterin
- gogat
-
napa
- n2o
-
nitrous
- isoniazid
- denitrificans
- paracoccus
-
griess
- kno3
- mycorrhizal
-
transpiration
- plumbaginifolia
- tungsten
-
anammox
- ethambutol
-
sausage
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6.3.1.2
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dinitrogen
Reaction
Synonyms
assimilatory NADH:nitrate reductase, Assimilatory nitrate reductase, cytosolic NADH nitrate reductase, EC 1.6.6.1, EC 1.7.99.4, MSMEG_4206, MSMEI_4108, NADH-dependent nitrate reductase, NADH-Nar, NADH-nitrate reductase, NADH-NO3- reductase, NADH:nitrate oxidoreductase, NaR, NaR1, NasA, NasC, NIA1, Nia2, nitrate reductase, NR, NR1, NR2, Pden_4449, reductase, nitrate
ECTree
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Metals Ions
Metals Ions on EC 1.7.1.1 - nitrate reductase (NADH)
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Fe
Fe2+
Molybdenum
NaCl
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100 mM NaCl increases enzyme activity in leaves from plants grown on 0.1 or 1 mM nitrate about 3fold
Ni2+
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a significant improvement of activity is achieved after cyanide treatment by addition of 5 mM NiCl2 which increases the enzyme recovery in leaf extract up to 63%
additional information
Molybdenum
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gamma subunit which carries molybdenum-containing component of 1000 Da
Molybdenum
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oxidation-reduction midpoint potentials of the molybdenum center: -8 mV for the Mo(VI)/Mo(V) couple and -42 mV for the Mo(V)/Mo(IV) couple
Molybdenum
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molybdenum, heme and FAD components are localized in distinct domains which are covalently linked by exposed hinge regions. The molybdenum domain appears to be important in the maintenance of subunit interactions in the enzyme complex
Molybdenum
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Mo/protein ratio 0.44 for His-tagged protein, 0.93 for GST-tagged protein
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increased ionic strength stimulates NADH:nitrate reductase activity
additional information
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tungsten cannot replace for molybdenum in the GST-tagged protein