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1.5.1.42: FMN reductase (NADH)

This is an abbreviated version!
For detailed information about FMN reductase (NADH), go to the full flat file.

Word Map on EC 1.5.1.42

Reaction

FMNH2
+
NAD+
=
FMN
+
NADH
+
H+

Synonyms

DszD, flavin reductase, Fred, HcbA3, hexachlorobenzene oxidative dehalogenase system reductase component, LuxG, LuxG oxidoreductase, NADH specific FMN reductase, NADH-dependent FMN reductase, NADH-FMN oxidoreductase, NADH-FMN reductase, NADH:flavin oxidoreductase, NADH:FMN oxidoreductase, NADH:FMN oxidoreductase (flavin reductase), NADH:FMN-oxidoreductase

ECTree

     1 Oxidoreductases
         1.5 Acting on the CH-NH group of donors
             1.5.1 With NAD+ or NADP+ as acceptor
                1.5.1.42 FMN reductase (NADH)

Engineering

Engineering on EC 1.5.1.42 - FMN reductase (NADH)

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PROTEIN VARIANTS
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
N33A
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33C
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33D
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33E
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33F
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33G
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33HID
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33HIE
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33HIP
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33I
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33K
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33L
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33M
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33Q
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33R
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33S
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33T
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33V
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33W
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
N33Y
site-directed mutagenesis, Gibbs activation and reaction free energies obtained for the hydride transfer compared to wild-type
T62A
-
the mutant shows 7fold increase in activity compared to the wild type enzyme
-
T62N
-
the mutant shows 5fold increase in activity compared to the wild type enzyme
-
additional information