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Ligand glucosone Please wait a moment until all data is loaded. This message will disappear when all data is loaded.
Basic Ligand Information Molecular Structure
C6 H1 0 O6
glucosone
DCNMIDLYWOTSGK-HSUXUTPPSA-N
2-dehydro-D-mannose, D-arabino-hexos-2-ulose
Roles as Enzyme Ligand
In Vivo Substrate in Enzyme-catalyzed Reactions (1 result)
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glucosone = cortalcerone + H2O
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Substrate in Enzyme-catalyzed Reactions (2 results)
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glucosone + NADPH = ? + NADP+
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glucosone = cortalcerone + H2O
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Product in Enzyme-catalyzed Reactions (4 results)
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D-mannose + O2 = 2-dehydro-D-mannose + H2O2
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D-glucose + O2 = D-arabino-hexos-2-ulose + H2O2
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D-mannose + acceptor = 2-dehydro-D-mannose + reduced acceptor
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D-mannose + ferrocenium ion = 2-dehydro-D-mannose + ferrocene
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Enzyme Kinetic Parameters
KM Value (1 result)
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References & Links Literature References (4)
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Purification and some properties of a hepatic NADPH-dependent reductase that specifically acts on 1,5-anhydro-D-fructose
1998
Sakuma, M.; Kametani, S.; Akanuma, H.
J. Biochem.
123
189-193
Enzymatic description of the anhydrofructose pathway of glycogen degradation II. Gene identification and characterization of the reactions catalyzed by aldos-2-ulose dehydratase that converts 1,5-anhydro-D-fructose to microthecin with ascopyrone M as the intermediate
2005
Yu, S.
Biochim. Biophys. Acta
1723
63-73
The anhydrofructose pathway and its possible role in stress response and signaling
2006
Yu, S.; Fiskesund, R.
Biochim. Biophys. Acta
1760
1314-1322
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Enzymatic production of microthecin by aldos-2-ulose dehydratase from 1,5-anhydro-D-fructose and stability studies of microthecin
2008
Yu, S.; Andreassen, M.; Lundt, I.
Biocatal. Biotransform.
26
169-176
Links to other databases for glucosone