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2.4.1.71
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platelet-derived
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pdgfrbeta
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sarcoma
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gists
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autocrine
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receptor-alpha
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soft-tissue
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crest
The enzyme appears in viruses and cellular organisms
Synonyms
glucosyltransferase, uridine diphosphoglucose-arylamine, N-GT, UDP glucose-arylamine glucosyltransferase, UDP-glucose:3,4-dichloroaniline N-glycosyltransferase, uridine diphosphoglucose-arylamine glucosyltransferase,
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glucosyltransferase, uridine diphosphoglucose-arylamine
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UDP glucose-arylamine glucosyltransferase
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UDP-glucose:3,4-dichloroaniline N-glycosyltransferase
uridine diphosphoglucose-arylamine glucosyltransferase
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N-GT
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UDP-glucose:3,4-dichloroaniline N-glycosyltransferase
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UDP-glucose:3,4-dichloroaniline N-glycosyltransferase
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UDP-glucose + an arylamine = UDP + an N-D-glucosylarylamine
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hexosyl group transfer
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UDP-glucose:arylamine N-D-glucosyltransferase
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TDP-glucose + an arylamine
TDP + an N-D-glucosylarylamine
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UDP-glucose + 2,3-dichloroaniline
UDP + N-(2,3-dichlorophenyl)-glucosylamine
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UDP-glucose + 2,4-dibromoaniline
UDP + N-(2,4-dibromophenyl)-glucosylamine
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UDP-glucose + 2,4-dichloroaniline
UDP + N-(2,4-dichlorophenyl)-glucosylamine
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UDP-glucose + 2,5-dibromoaniline
UDP + N-(2,5-dibromophenyl)-glucosylamine
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UDP-glucose + 2,5-dichloroaniline
UDP + N-(2,5-dichlorophenyl)-glucosylamine
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UDP-glucose + 3,4-dichloroaniline
UDP + N-(3,4-dichlorophenyl)-glucosylamine
UDP-glucose + 3,5-dichloroaniline
UDP + N-(3,5-dichlorophenyl)-glucosylamine
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UDP-glucose + 3-amino-2,5-dichlorobenzoic acid
UDP + 3-glucosylamino-2,5-dichlorobenzoic acid
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UDP-glucose + 3-aminobenzoic acid
UDP + 3-glucosylaminobenzoic acid
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UDP-glucose + 3-chloroaniline
UDP + N-(3-chlorophenyl)-glucosylamine
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31% efficiency compared to 3,4-dichloroaniline
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UDP-glucose + 3-nitroaniline
UDP + N-(3-nitrophenyl)-glucosylamine
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UDP-glucose + 4-bromoaniline
UDP + N-(4-bromophenyl)-glucosylamine
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28% efficiency compared to 3,4-dichloroaniline
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UDP-glucose + 4-chloroaniline
UDP + N-(4-chlorophenyl)-glucosylamine
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71% efficiency compared to 3,4-dichloroaniline
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UDP-glucose + 5-amino-2,3-dichlorobenzoic acid
UDP + 5-glucosylamino-2,3-dichlorobenzoic acid
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UDP-glucose + an arylamine
UDP + an N-D-glucosylarylamine
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involved in N-glucosylarylamines biosynthesis, may be participate in arylamine herbicide metabolism
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UDP-glucose + 3,4-dichloroaniline
UDP + N-(3,4-dichlorophenyl)-glucosylamine
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UDP-glucose + 3,4-dichloroaniline
UDP + N-(3,4-dichlorophenyl)-glucosylamine
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best glucosyl acceptor, no glucosyl donors are GDP-glucose, CDP-glucose, ADP-glucose, UDP-mannose
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UDP-glucose + 3,4-dichloroaniline
UDP + N-(3,4-dichlorophenyl)-glucosylamine
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UDP-glucose + an arylamine
UDP + an N-D-glucosylarylamine
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involved in N-glucosylarylamines biosynthesis, may be participate in arylamine herbicide metabolism
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GSSG
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oxidized glutathione, weak
Sodium arsenate
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1 mM, weak
UDP
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linear competitive inhibitor to UDPglucose
additional information
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no inhibition by EDTA and iodoacetate, 1 mM each
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0.563
3,4-dichloroaniline
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additional information
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activity in different tissues
additional information
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activity in different tissues
additional information
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activity in different tissues
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7.5
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with 3,4-dichloroaniline as acceptor
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28
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assay at
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brenda
constitutive
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brenda
Merril, var. Hawkeye
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brenda
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brenda
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brenda
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brenda
additional information
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no activity in cell culture and plant
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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seedling
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brenda
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etiolated
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brenda
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brenda
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brenda
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50
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80% loss of activity within 10 min
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ammonium sulfate at high concentrations inactivates
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freeze-thawing, stable to
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stable to centrifugation at 150000 rpm for 90 min
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-15°C, lyophilized, several months
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freezing for 48 h of plant material causes a slight loss in activity
freezing for 48 h of root material causes 19% loss in activity
freezing for 48 h of plant material causes a slight loss in activity
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freezing for 48 h of plant material causes a slight loss in activity
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freezing for 48 h of root material causes 19% loss in activity
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freezing for 48 h of root material causes 19% loss in activity
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Frear, D.S.
Herbicide Metabolism in plants-I. Purification and properties of UDP-glucose:arylamine N-glucosyltransferase from soybean
Phytochemistry
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381-390
1968
Glycine max
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brenda
Schmidt, B.; Rivero, C.; Thiede, B.
3,4-Dichloroaniline N-glucosyl- and N-malonyltransferase activities in cell cultures and plants of soybean and wheat
Phytochemistry
39
81-84
1995
Glycine max, Triticum aestivum
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brenda
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