2.7.1.172: protein-ribulosamine 3-kinase
This is an abbreviated version!
For detailed information about protein-ribulosamine 3-kinase, go to the full flat file.
Word Map on EC 2.7.1.172
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2.7.1.172
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deglycation
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erythrocytes
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ribose
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amadori
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5-phosphate
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fructoselysine
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nonenzymatic
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protein-bound
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maillard
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erythrose
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haemoglobin
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decomposing
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tata-less
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transglycation
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sphingosine
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protein-repair
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caat-less
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ketoamine
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endproducts
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non-physiological
- 2.7.1.172
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deglycation
- erythrocytes
- ribose
-
amadori
- 5-phosphate
- fructoselysine
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nonenzymatic
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protein-bound
-
maillard
- erythrose
- haemoglobin
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decomposing
-
tata-less
-
transglycation
- sphingosine
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protein-repair
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caat-less
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ketoamine
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endproducts
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non-physiological
Reaction
Synonyms
FN3K-related protein, FN3K-RP, Fn3KRP, fructosamine 3-kinase-related protein, fructosamine-3-kinase-related protein, fructosamine-3-kinase–related protein, ketosamine 3-kinase 2, ribulosamine/erythrulosamine 3-kinase
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Natural Substrates Products
Natural Substrates Products on EC 2.7.1.172 - protein-ribulosamine 3-kinase
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REACTION DIAGRAM
ATP + (R)-1-(5-(3-amino-4-hydroxy-3-methylbutyl)-1-methyl-1H-pyrrol-2-yl)-4-(p-tolyl)butan-1-one
ADP + (2R)-2-amino-2-methyl-4-(1-methyl)-5-[4-(4-methylphenyl)butanoyl]-1H-pyrrol-2-yl)butyl dihydrogen phosphate
CS-0777
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ir
ATP + [protein]-N6-D-psicosyl-L-lysine
ADP + [protein]-N6-(O3-phosphono-D-psicosyl)-L-lysine
ketosamine-3-kinase 2 plays a role in freeing proteins from ribulosamines or psicosamines, which might arise in a several step process, from the reaction of amines with glucose and/or glycolytic intermediates. This role is shared by fructosamine-3-kinase (ketosamine-3-kinase 1), which has, in addition, the unique capacity to phosphorylate fructosamines
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ATP + [protein]-N6-D-ribulosyl-L-lysine
ADP + [protein]-N6-(3-O-phospho-D-ribulosyl)-L-lysine
ADP + [protein]-N6-(3-O-phospho-D-ribulosyl)-L-lysine
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ATP + [protein]-N6-D-ribulosyl-L-lysine
ADP + [protein]-N6-(3-O-phospho-D-ribulosyl)-L-lysine
ketosamine-3-kinase 2 plays a role in freeing proteins from ribulosamines or psicosamines, which might arise in a several step process, from the reaction of amines with glucose and/or glycolytic intermediates. This role is shared by fructosamine-3-kinase (ketosamine-3-kinase 1), which has, in addition, the unique capacity to phosphorylate fructosamines
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FN3K-RP can act inside erythrocytes as a deglycating enzyme by converting ketoamines into unstable phosphate esters. Potential physiological substrates are psicosamines, which appear to be formed slowly from fructosamines
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additional information
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FN3K-RP can act inside erythrocytes as a deglycating enzyme by converting ketoamines into unstable phosphate esters. Potential physiological substrates are psicosamines, which appear to be formed slowly from fructosamines
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