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EC Tree
IUBMB Comments Solanesyl phosphate and ficaprenyl phosphate can act as acceptors, but more slowly.
The taxonomic range for the selected organisms is: Homo sapiens The expected taxonomic range for this enzyme is: Eukaryota, Bacteria, Archaea
Synonyms
udp-glucose:dolichyl-phosphate glucosyltransferase, udp-glucose:dolichylphosphate glucosyltransferase, dolichyl-phosphate beta-glucosyltransferase, udp-glucose dolichyl-phosphate glucosyltransferase, udp-glucose:dolichol phosphate glucosyltransferase, udp-glucose:dolichyl phosphate glucosyltransferase,
more
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glucosyltransferase, uridine diphosphoglucose-dolichol
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polyprenyl phosphate:UDP-D-glucose glucosyltransferase
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UDP-glucose dolichyl-phosphate glucosyltransferase
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UDP-glucose:dolichol phosphate glucosyltransferase
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UDP-glucose:dolicholphosphoryl glucosyltransferase
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UDP-glucose:dolichyl monophosphate glucosyltransferase
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UDP-glucose:dolichyl phosphate glucosyltransferase
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UDP-glucose:dolichylphosphate glucosyltransferase
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UDP-alpha-D-glucose + dolichyl phosphate = UDP + dolichyl beta-D-glucosyl phosphate
sequential mechanism
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hexosyl group transfer
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UDP-glucose:dolichyl-phosphate beta-D-glucosyltransferase
Solanesyl phosphate and ficaprenyl phosphate can act as acceptors, but more slowly.
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UDP-glucose + dolichyl phosphate
UDP + dolichyl beta-D-glucosyl phosphate
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?
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Ca2+
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divalent cation required, maximum stimulation in presence of Ca2+. Co2+, Mg2+ or Mn2+ can replace Ca2+
Co2+
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divalent cation required, maximum stimulation in presence of Ca2+. Co2+, Mg2+ or Mn2+ can replace Ca2+
Mg2+
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divalent cation required, maximum stimulation in presence of Ca2+. Co2+, Mg2+ or Mn2+ can replace Ca2+
Mn2+
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divalent cation required, maximum stimulation in presence of Ca2+. Co2+, Mg2+ or Mn2+ can replace Ca2+
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UDP
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competitive
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Phospholipid
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required, phosphatidylethanolamine most effective
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Plasmacytoma
Partial purification and properties of a murine plasmacytoma glucosyltransferase.
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0.00015 - 0.00033
UDP-glucose
0.00015
UDP-glucose
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pH 7.2
0.00033
UDP-glucose
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pH 5.3
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0.1
UDP
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at pH 7.2
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additional information
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5.3
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second optimum at pH 7.2
7.2
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second optimum at pH 5.3
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brenda
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brenda
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brenda
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brenda
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ALG5_HUMAN
324
1
36946
Swiss-Prot
Secretory Pathway (Reliability: 1 )
A0A7P0T8X9_HUMAN
251
0
28529
TrEMBL
Secretory Pathway (Reliability: 1 )
Q9HC03_HUMAN
324
1
36964
TrEMBL
Secretory Pathway (Reliability: 1 )
A0A7P0TAL2_HUMAN
259
1
29205
TrEMBL
Secretory Pathway (Reliability: 1 )
A0A7P0T9C7_HUMAN
286
1
32789
TrEMBL
Secretory Pathway (Reliability: 1 )
A0A7P0T9B8_HUMAN
310
1
35139
TrEMBL
Secretory Pathway (Reliability: 1 )
A0A7P0T901_HUMAN
291
0
33727
TrEMBL
other Location (Reliability: 2 )
A0A7P0TB27_HUMAN
304
1
34807
TrEMBL
Secretory Pathway (Reliability: 1 )
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36000
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x * 36000, SDS-PAGE
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uridine or UDPglucuronic acid, 5 mM, protects solubilized enzyme against rapid inactivation
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5 mM uridine or UDPglucuronic acid reconstitutes inactivated enzyme
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Matern, H.; Bolz, R.; Matern, S.
Isolation and characterization of UDP-glucose dolichyl-phosphate glucosyltransferase from human liver
Eur. J. Biochem.
190
99-105
1990
Homo sapiens
brenda
Matern, H.; Matern, S.
Control of dolichyl phosphoglucose formation in human liver microsomes. Kinetic and inhibition studies of nucleosides, nucleotides and analogues of UDPglucose
Biochim. Biophys. Acta
1004
67-72
1989
Homo sapiens
brenda
Gartung, C.; Matern, S.; Matern, H.
The submicrosomal localization of uridine 5'-diphosphate-glucose dolichyl-phosphate glucosyltransferase and bile acid glucosyltransferase in the human liver
J. Hepatol.
20
32-40
1994
Homo sapiens
brenda