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EC Number
Substrates
Commentary Substrates
Organism
Products
Commentary (Products)
Reversibility
2.7.1.86
ATP + NADH
2fold preference for NADH over NAD+
Saccharomyces cerevisiae
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
may be involved in maintaining the level of triphosphopyridine nucleotide in the mitochondria
Saccharomyces cerevisiae
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
the enzyme has primarily NADH kinase activity in mitochondria, mitochondrial NADPH is largely provided by the POS5 NADH kinase
Saccharomyces cerevisiae
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
preferentially phosphorylates reduced NAD+ but can use oxidized NAD+. ATP is preferred phophoryl donor but UTP, GTP, and CTP may substitute with lower activity
Arabidopsis thaliana
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
NADH is preferred 100fold over NAD+
Arabidopsis thaliana
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
phosphorylates NADH with 2% of the specific activity of its NAD kinase activity
Saccharomyces cerevisiae
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
possesses 33% activity with NADH and ATP compared to the activity obtained with NAD and ATP
Saccharomyces cerevisiae
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
shows a 2fold preference for NADH over NAD+
Arabidopsis thaliana
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
Pos5 is responsible for all mitochondrial NAD/NADH kinase. Transitory exposure of Pos5 to the cytoplasm is required for the viability of utr1 mutants
Saccharomyces cerevisiae
ADP + NADPH
-
?
2.7.1.86
ATP + NADH
isoform NADK1 shows 169% activity compared to NAD+
Arabidopsis thaliana
ADP + NADPH
-
?
Results
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