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The enzyme appears in viruses and cellular organisms
Synonyms 3-methyleneoxindole reductase, more
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3-methyleneoxindole reductase, 3-methyleneoxindole
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reductase, 3-methyleneoxindole
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3-methyl-1,3-dihydroindol-2-one + NADP+ = 3-methylene-1,3-dihydro-2H-indol-2-one + NADPH + H+
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3-methyl-1,3-dihydroindol-2-one:NADP+ oxidoreductase
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
menadione + NADPH
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Substrates: low activity Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
ir
3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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3-methyleneoxindole + NADPH
3-methyloxindole + NADP+
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Substrates: - Products: -
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NADH
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10% of activity with NADPH
NADPH
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2,4-Dichlorophenoxyacetic acid
1-Naphthaleneacetic acid
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competitive, reductase B
1-Naphthaleneacetic acid
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2,4-Dichlorophenoxyacetic acid
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competitive, reductase A, pH-depndent
2,4-Dichlorophenoxyacetic acid
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4
1-naphtaleneacetic acid
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12
2,4-Dichlorophenoxyacetic acid
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2.7
indole-3-acetic acid
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1.9
Indole-3-aldehyde
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additional information
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0.14, decrease in absorbance at 340 nm/min/mg protein, activity in coleoptiles
additional information
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0.0082, decrease in absorbance at 340 nm/min/mg protein, activity in nodules
additional information
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0.019, decrease in absorbance at 340 nm/min/mg protein, activity in root
additional information
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0.076, decrease in absorbance at 340 nm/min/mg protein, activity in nodule
additional information
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0.114, decrease in absorbance at 340 nm/min/mg protein, activity in root
additional information
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0.024, decrease in absorbance at 340 nm/min/mg protein, activity in nodule
additional information
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0.032, decrease in absorbance at 340 nm/min/mg protein, activity in root
additional information
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0.014, DELTA absorbance/min/mg protein, activity in young and mature nodules
additional information
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0.034, DELTA absorbance/min/mg protein, activity in roots shows seasonal changes, highest activity in january
additional information
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0.086, decrease in absorbance at 340 nm/min/mg protein, activity in nodule
additional information
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0.0056, decrease in absorbance at 340 nm/min/mg protein, activity in nodule
additional information
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0.0096, decrease in absorbance at 340 nm/min/mg protein, activity in root
additional information
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0.0075, decrease in absorbance at 340 nm/min/mg protein, activity in root
additional information
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0.012, decrease in absorbance at 340 nm/min/mg protein, activity in nodule
additional information
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0.017, decrease in absorbance at 340 nm/min/mg protein, activity in root
additional information
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0.03, decrease in absorbance at 340 nm/min/mg protein, activity in 7 days old roots, activity increases from day 1 to day 7
additional information
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0.01, decrease in absorbance at 340 nm/min/mg protein, activity in shoots of 1 to 7 day old seedlings
additional information
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approx. 0.18, DELTA absorbance/h/mg protein, activity in mature nodule, activity is lower in young and old nodules
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4 - 7
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50% of maximum activity at pH 4.0 and pH 7.0
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oat
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brenda
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brenda
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brenda
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brenda
lentil
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brenda
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brenda
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brenda
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brenda
wheat
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brenda
ROXB. var. mungo
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brenda
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brenda
pea, at least 3 forms of enzyme
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brenda
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pea flour
brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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brenda
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activity depending on age of nodules
brenda
Highest Expressing Human Cell Lines
Filter by:
Cell Line Links
Gene Links
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4-8°C, at least 1 month
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Chattopadhyay, K.; Basu, P.S.
Studies on root nodules of leguminous plants: the bioproduction of different phytohormones in root nodules of Crotalaria juncea L. and Dalbergia sissoo ROXB and by their rhizobial microsymbiont
Biol. Plant.
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168-176
1989
Crotalaria juncea, Dalbergia sissoo
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brenda
Dangar, T.K.; Basu, P.S.
Studies on plant growth substances, IAA metabolism and nitrogenase activity in root nodules of Phaseolus aureus ROXB. Var. mungo
Biol. Plant.
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350-354
1987
Vigna radiata var. radiata
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brenda
Bhattacharyya, R.N.; Chattopadhyay, K.K.; Basu, P.S.
Auxin activity of 3-hydroxymethyl oxindole and 3-methylene oxindole in oat
Biol. Plant.
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219-226
1986
Avena sativa
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brenda
Dangar, T.K.; Basu, P.S.
Seasonal changes and metabolism of plant hormones in root nodules of Lens sp.
Biol. Plant.
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253-259
1984
Lens culinaris
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brenda
Bhowmick, P.K.; Basu, P.S.
Contents of hormones, and indolacetic acid metabolism in root nodules of Erythrina indica LAMK., Sesbania grandiflora PERS., and Pterocarpus santalinus LINN.
Biochem. Physiol. Pflanz.
179
455-462
1984
Erythrina variegata, Pterocarpus santalinus, Sesbania grandiflora
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brenda
Sinha, B.K.; Ghosh, S.; Basu, P.S.
3-Hydroxymethyl oxindole: its auxin action and metabolism in wheat
Biochem. Physiol. Pflanz.
177
447-459
1982
Triticum aestivum
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brenda
Sinha, B.K.; Basu, P.S.
Indole-3-acetic acid and its metabolism in root nodules of Pongamia pinnata (L.) pierre
Biochem. Physiol. Pflanz.
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218-227
1981
Pongamia pinnata
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brenda
Basu, P.S.; Tuli, V.
Enzymatic dehydration of 3-hydroxymethyloxindole
Plant Physiol.
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503-506
1972
Triticum aestivum
brenda
Moyed, H.S.; Williamson, V.
Multiple 3-methyleneoxindole reductases of peas, differential inhibition by synthetic auxins
J. Biol. Chem.
242
1075-1077
1967
Pisum sativum
brenda
Moyed, H.S.; Williamson, V.
3-Methyleneoxindole reductase of peas
Plant Physiol.
42
510-514
1967
Pisum sativum
brenda
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