The Mixed Function Oxidase System metabolizes a wide range of biochemicals including drugs, pesticides and steroids. Cytochrome P450 reductase is a key enzymatic component of this system, supplying reducing equivalents from NADPH to cytochrome P450. The electrons are shuttled through reductase via two flavin moieties: FAD and FMN. Although the exact mechanism of flavins action is not known, the enzymatic features of reductase greatly depleted of either FMN of FAD have been characterized. Additionally, flavin location within reductase has been proposed by homology and chemical modification studies. This study seeks to extend the flavin depletion analysis in a more controlled system by eliminating the proposed FMN binding domain with recombin...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
The research on flavins and flavoproteins started in 1879 with the discovery of the yellow pigment "...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochrome P450 and catalyzes...
NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochrome P450 and catalyzes...
NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochrome P450 and catalyzes...
Flavoprotein reductases play a key role in electron transfer in many physiological processes. We hav...
Flavoprotein reductases play a key role in electron transfer in many physiological processes. We hav...
Flavoprotein reductases play a key role in electron transfer in many physiological processes. We hav...
The goal of this project was to purify the isolated FAD domain from rat cytochrome P450 reductase a...
The goal of this project was to purify the isolated FAD domain from rat cytochrome P450 reductase a...
SummaryNADPH-cytochrome P450 reductase transfers two reducing equivalents derived from a hydride ion...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
NADPH cytochrome P-450 reductase releases FMN and FAD upon dilution into slightly acidic potassium b...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
The research on flavins and flavoproteins started in 1879 with the discovery of the yellow pigment "...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochrome P450 and catalyzes...
NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochrome P450 and catalyzes...
NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochrome P450 and catalyzes...
Flavoprotein reductases play a key role in electron transfer in many physiological processes. We hav...
Flavoprotein reductases play a key role in electron transfer in many physiological processes. We hav...
Flavoprotein reductases play a key role in electron transfer in many physiological processes. We hav...
The goal of this project was to purify the isolated FAD domain from rat cytochrome P450 reductase a...
The goal of this project was to purify the isolated FAD domain from rat cytochrome P450 reductase a...
SummaryNADPH-cytochrome P450 reductase transfers two reducing equivalents derived from a hydride ion...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
NADPH cytochrome P-450 reductase releases FMN and FAD upon dilution into slightly acidic potassium b...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...
The research on flavins and flavoproteins started in 1879 with the discovery of the yellow pigment "...
Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced p...