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2.7.1.22: ribosylnicotinamide kinase

This is an abbreviated version!
For detailed information about ribosylnicotinamide kinase, go to the full flat file.

Word Map on EC 2.7.1.22

Reaction

ATP
+
1-(beta-D-ribofuranosyl)-nicotinamide
=
ADP
+
beta-nicotinamide D-ribonucleotide

Synonyms

kinase, ribosylnicotinamide (phosphorylating), More, muscle-specific beta1 integrin binding protein, NadR, nicotinamide ribose kinase, nicotinamide riboside kinase, nicotinamide riboside kinase 1, nicotinamide riboside kinase 2, nicotinamide riboside kinase-2, NmR-K, NMRK1, NMRK2, NR kinase 1, Nrk, NRK-2, NRK1, Nrk2, Nrk2b

ECTree

     2 Transferases
         2.7 Transferring phosphorus-containing groups
             2.7.1 Phosphotransferases with an alcohol group as acceptor
                2.7.1.22 ribosylnicotinamide kinase

Reference

Reference on EC 2.7.1.22 - ribosylnicotinamide kinase

Please use the Reference Search for a specific query.
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REF.
AUTHORS
TITLE
JOURNAL
VOL.
PAGES
YEAR
ORGANISM (UNIPROT)
PUBMED ID
SOURCE
Rowen, J.W.; Kornberg, A.
The phosphorolysis of nicotinamide riboside
J. Biol. Chem.
193
497-507
1951
Sus scrofa
Manually annotated by BRENDA team
Singh, S.K.; Kurnasov, O.V.; Chen, B.; Robinson, H.; Grishin, N.V.; Osterman, A.L.; Zhang, H.
Crystal structure of Haemophilus influenzae NadR protein. A bifunctional enzyme endowed with NMN adenyltransferase and ribosylnicotinimide kinase activities
J. Biol. Chem.
277
33291-33299
2002
Haemophilus influenzae
Manually annotated by BRENDA team
Kurnasov, O.V.; Polanuyer, B.M.; Ananta, S.; Sloutsky, R.; Tam, A.; Gerdes, S.Y.; Osterman, A.L.
Ribosylnicotinamide kinase domain of NadR protein: identification and implications in NAD biosynthesis
J. Bacteriol.
184
6906-6917
2002
Escherichia coli, Salmonella enterica, Haemophilus influenzae (Q57425), Haemophilus influenzae
Manually annotated by BRENDA team
Grose, J.H.; Bergthorsson, U.; Roth, J.R.
Regulation of NAD synthesis by the trifunctional NadR protein of Salmonella enterica
J. Bacteriol.
187
2774-2782
2005
Salmonella enterica
Manually annotated by BRENDA team
Belenky, P.; Racette, F.G.; Bogan, K.L.; McClure, J.M.; Smith, J.S.; Brenner, C.
Nicotinamide riboside promotes Sir2 silencing and extends lifespan via Nrk and Urh1/Pnp1/Meu1 pathways to NAD+
Cell
129
473-484
2007
Saccharomyces cerevisiae (P53915)
Manually annotated by BRENDA team
Merdanovic, M.; Sauer, E.; Reidl, J.
Coupling of NAD+ biosynthesis and nicotinamide ribosyl transport: characterization of NadR ribonucleotide kinase mutants of Haemophilus influenzae
J. Bacteriol.
187
4410-4420
2005
Haemophilus influenzae
Manually annotated by BRENDA team
Khan, J.A.; Xiang, S.; Tong, L.
Crystal structure of human nicotinamide riboside kinase
Structure
15
1005-1013
2007
Homo sapiens (Q9NWW9), Homo sapiens
Manually annotated by BRENDA team
Zamporlini, F.; Ruggieri, S.; Mazzola, F.; Amici, A.; Orsomando, G.; Raffaelli, N.
Novel assay for simultaneous measurement of pyridine mononucleotides synthesizing activities allows dissection of the NAD+ biosynthetic machinery in mammalian cells
FEBS J.
281
5104-5119
2014
Homo sapiens
Manually annotated by BRENDA team
Ahmad, F.; Tomar, D.; Aryal A C, S.; Elmoselhi, A.B.; Thomas, M.; Elrod, J.W.; Tilley, D.G.; Force, T.
Nicotinamide riboside kinase-2 alleviates ischemia-induced heart failure through P38 signaling
Biochim. Biophys. Acta
1866
165609
2020
Mus musculus (Q9D7C9), Mus musculus, Homo sapiens (Q9NPI5), Homo sapiens, Mus musculus C57BL/6N (Q9D7C9)
Manually annotated by BRENDA team
Fletcher, R.S.; Ratajczak, J.; Doig, C.L.; Oakey, L.A.; Callingham, R.; Da Silva Xavier, G.; Garten, A.; Elhassan, Y.S.; Redpath, P.; Migaud, M.E.; Philp, A.; Brenner, C.; Canto, C.; Lavery, G.G.
Nicotinamide riboside kinases display redundancy in mediating nicotinamide mononucleotide and nicotinamide riboside metabolism in skeletal muscle cells
Mol. Metab.
6
819-832
2017
Mus musculus (Q91W63), Mus musculus (Q9D7C9)
Manually annotated by BRENDA team
Sambeat, A.; Ratajczak, J.; Joffraud, M.; Sanchez-Garcia, J.L.; Giner, M.P.; Valsesia, A.; Giroud-Gerbetant, J.; Valera-Alberni, M.; Cercillieux, A.; Boutant, M.; Kulkarni, S.S.; Moco, S.; Canto, C.
Endogenous nicotinamide riboside metabolism protects against diet-induced liver damage
Nat. Commun.
10
4291
2019
Mus musculus (Q91W63)
Manually annotated by BRENDA team
Ratajczak, J.; Joffraud, M.; Trammell, S.A.; Ras, R.; Canela, N.; Boutant, M.; Kulkarni, S.S.; Rodrigues, M.; Redpath, P.; Migaud, M.E.; Auwerx, J.; Yanes, O.; Brenner, C.; Canto, C.
NRK1 controls nicotinamide mononucleotide and nicotinamide riboside metabolism in mammalian cells
Nat. Commun.
7
13103
2016
Mus musculus
Manually annotated by BRENDA team
Doig, C.L.; Zielinska, A.E.; Fletcher, R.S.; Oakey, L.A.; Elhassan, Y.S.; Garten, A.; Cartwright, D.; Heising, S.; Alsheri, A.; Watson, D.G.; Prehn, C.; Adamski, J.; Tennant, D.A.; Lavery, G.G.
Induction of the nicotinamide riboside kinase NAD+ salvage pathway in a model of sarcoplasmic reticulum dysfunction
Skeletal Muscle
10
5
2020
Mus musculus (Q9D7C9), Mus musculus C57/BL6J (Q9D7C9)
Manually annotated by BRENDA team
Fletcher, R.S.; Lavery, G.G.
The emergence of the nicotinamide riboside kinases in the regulation of NAD+ metabolism
J. Mol. Endocrinol.
61
R107-R121
2018
Danio rerio (F1QSN9), Homo sapiens (Q9NPI5), Homo sapiens (Q9NWW6), Mus musculus (Q91W63), Mus musculus (Q9D7C9)
Manually annotated by BRENDA team