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Spinacia oleracea (Spinach) Ferredoxin-NADP+ Reductase

 Product Information

Cat #
MBS-0524
CAS No.
9029-33-8
Enzyme Commission Number
EC 1.18.1.2
Product Overview
High-quality enzyme products. Well-defined strains can be also provided for our clients to manufacture fermented products in a cost-effective way.
Features
Ready-to-use product, accelerating research progress, enhancing application performance.
Method
Technology
Synonyms
ferredoxin-nicotinamide adenine dinucleotide phosphate reductase; ferredoxin-NADP+ reductase; TPNH-ferredoxin reductase; ferredoxin-NADP+ oxidoreductase; NADP+:ferredoxin oxidoreductase; ferredoxin-TPN reductase; ferredoxin-NADP+-oxidoreductase; NADPH:ferredoxin oxidoreductase; ferredoxin-nicotinamide-adenine dinucleotide phosphate (oxidized) reductase
Type
Function
A flavoprotein (FAD). In chloroplasts and cyanobacteria the enzyme acts on plant-type [2Fe-2S] ferredoxins, but in other bacteria it can also reduce bacterial [4Fe-4S] ferredoxins and flavodoxin.
Applications
Research Use
Storage
−20°C
Storage Buffer
Shelf Life
Strains
Plant cells
Source
Spinacia oleracea (Spinach)
Appearance
Molecular Weight
Color / Form
Instruction
Enzyme Class
Oxidoreductases
Production Methods
Fermentation
Activity
> 15 units/mg solid, secondary activity: > 10 units/mg solid NADPH diaphorase
Specific Enzyme Activity
Purity
Unit Definition
One unit will reduce 1.0 millimole of cytochrome C per min at pH 7.5 at 25°C in the presence of spinach ferredoxin and NADP.
Amino Acids Sequence
WARNINGS
Shipping
Formula
Reaction
2 reduced ferredoxin + NADP+ + H+ = 2 oxidized ferredoxin + NADPH
Recommendation
Species Reactivity
Contents
Compatibility
Melting Point
Final Titre
Fermentation Time
Recovery Yield
Starting Material
Specification
On customer requests
Substrates
Concentration
Usage And Dosage

 Description

Ferredoxin-NADP+ reductase catalyzes the reversible conversion of reduced ferredoxin to oxidized ferredoxin during photosynthesis. Ferredoxin-NADP (H) reductase constitutes a family of hydrophilic FAD-containing monomeric enzymes that deliver NADPH or low potential one-electron donors to redox-based metabolisms in plastids, mitochondria, and bacteria.

For Research Use Only.
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