2.7.1.52: fucokinase
This is an abbreviated version!
For detailed information about fucokinase, go to the full flat file.
Word Map on EC 2.7.1.52
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2.7.1.52
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salvage
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fucosyltransferase
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3hfucose
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reutilization
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gdp-alpha-d-mannose
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gdp-beta-l-fucose
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synthesis
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analysis
- 2.7.1.52
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salvage
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fucosyltransferase
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3hfucose
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reutilization
- gdp-alpha-d-mannose
- gdp-beta-l-fucose
- synthesis
- analysis
Reaction
Synonyms
ATP:6-deoxy-beta-L-galactose 1-phosphotransferase, ATP:6-deoxy-L-galactose 1-phospho transferase, Fkgp, FKP, fucokinase, fucokinase/L-fucose-1-P-guanylyltransferase, fucokinase:GDP-fucose pyrophosphorylase, fucose kinase, Fuk, kinase, fuco- (phosphorylating), L-fucokinase, L-fucokinase/guanosine 5'-diphosphate-L-fucose pyrophosphorylase, L-fucokinase/guanosine-5'-diphosphate-Fuc pyrophosphorylase, L-fucokinase:GDP-fucose pyrophosphorylase, L-fucose kinase, L-fucose kinase/GDP-L-fucose pyrophosphorylase, More
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Metals Ions
Metals Ions on EC 2.7.1.52 - fucokinase
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Ca2+
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absolute requirement for a divalent cation, 85% of the activation with Mg2+
Co2+
Fe2+
Mg2+
Mn2+
additional information
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not influenced by Ca2+, Cu2+, K+, Hg2+, Ni2+ and Zn2+
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divalent cation required, CoSO4 exhibits 12% of the activity with MgSO4
Co2+
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absolute requirement for a divalent cation, 15% of the activation with Mg2+
Co2+
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divalent cation required, Co2+ stimulates with maximal activity at 3-5 mM, maximal activity is about 35-30% compared to activation by Mg2+
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absolute requirement for a divalent cation, 29% of the activation with Mg2+
Fe2+
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divalent cation required, Fe2+ stimulates nearly to the same degree as Mg2+, optimum activity at 10 mM
Mg2+
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divalent cation required Mg2+ is slightly more effective than Mn2+
Mn2+
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Mn2+ is the best suitable divalent cation of the L-fucokinase activity
Mn2+
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divalent cation required, MnSO4 exhibits 90% of the activity with MgSO4
Mn2+
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absolute requirement for a divalent cation, 87% of the activation with Mg2+
Mn2+
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divalent cation required, Mn2+ stimulates with maximal activity at 3-5 mM, maximal activity is about 35-30% compared to activation by Mg2+