2.7.1.26: riboflavin kinase
This is an abbreviated version!
For detailed information about riboflavin kinase, go to the full flat file.
Word Map on EC 2.7.1.26
-
2.7.1.26
-
mononucleotide
-
ammoniagenes
-
fadss
-
isoalloxazine
-
kyphoplasty
-
flavocoenzyme
-
flavinogenic
-
ribityl
-
davawensis
-
roseoflavin
-
famata
-
ctp-dependent
-
synthesis
-
drug development
- 2.7.1.26
- mononucleotide
- ammoniagenes
-
fadss
- isoalloxazine
-
kyphoplasty
-
flavocoenzyme
-
flavinogenic
-
ribityl
- davawensis
- roseoflavin
- famata
-
ctp-dependent
- synthesis
- drug development
Reaction
Synonyms
AtFMN/FHy, ATP: riboflavin kinase, ATP:riboflavin kinase, bifunctional riboflavin kinase/FMN adenylyltransferase, CaFADS, FAD synthetase, FADS, FK, flavokinase, flavokinase/FAD synthetase, flavokinase/flavin adenine dinucleotide synthetase, FMN adenylyltransferase, FMNAT, HsRFK, kinase, riboflavin, More, RFK, RibC, ribF, riboflavin kinase, riboflavin kinase/FMN adenylyltransferase, riboflavine kinase, RibR
ECTree
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Metals Ions
Metals Ions on EC 2.7.1.26 - riboflavin kinase
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Co2+
Mg2+
Mn2+
Zn2+
Co2+
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divalent metal ions are essential activators, in the order of decreasing efficiency: Mg2+, Co2+, Zn2+, Cu2+, Cd2+, Fe2+
Mg2+
required, the interaction with the two Mg2+ ion coordinating waters by Asp168 is important for the catalytic activity of the enzym. Residues Asn62, Asp66, Asp168, and Arg297 interact either with ATP phosphate groups, or coordinate the catalytic Mg2+ ion either directly or indirectly through water moleculese