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1.16.1.7: ferric-chelate reductase (NADH)

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

Word Map on EC 1.16.1.7

Reaction

2 Fe(II)-siderophore +

NAD+
+
H+
= 2 Fe(III)-siderophore +
NADH

Synonyms

AhFRO1, EC 1.6.99.13, FC-R, FCR, Fe deficiency-induced ferric chelate reductase, Fe(III) chelate reductase, Fe(III) reductase, Fe(III)-chelate reductase, Fe(III)-ethylenediaminetetraacetic complex reductase, Fe(III)EDTA reductase, Fe3+-chelate reductase, ferric chelate reductase, ferric reductase oxidase, ferric-chelate reductase, FRO1, FRO2, FRO6, FRO7, iron chelate reductase, NADH-linked FeEDTA reductase, NADH-linked ferric chelate (turbo) reductase, NADH:Fe3+ oxidoreductase, reductase, iron chelate, root Fe(III) reductase, [Fe(III)-EDTA] reductase

ECTree

     1 Oxidoreductases
         1.16 Oxidizing metal ions
             1.16.1 With NAD+ or NADP+ as acceptor
                1.16.1.7 ferric-chelate reductase (NADH)

Systematic Name

Systematic Name on EC 1.16.1.7 - ferric-chelate reductase (NADH)

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SYSTEMATIC NAME
IUBMB Comments
Fe(II)-siderophore:NAD+ oxidoreductase
Contains FAD. The enzyme catalyses the reduction of bound ferric iron in a variety of iron chelators (siderophores), resulting in the release of ferrous iron. The plant enzyme is involved in the transport of iron across plant plasma membranes. The enzyme from the bacterium Paracoccus denitrificans can also reduce chromate. cf. EC 1.16.1.9, ferric-chelate reductase (NADPH) and EC 1.16.1.10, ferric-chelate reductase [NAD(P)H].