Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Activation of Coq6p, a FAD Monooxygenase Involved in Coenzyme Q Biosynthesis, by Adrenodoxin Reductase/Ferredoxin

View through CrossRef
AbstractAdrenodoxin reductase (AdxR) plays a pivotal role in electron transfer, shuttling electrons between NADPH and iron/sulfur adrenodoxin proteins in mitochondria. This electron transport system is essential for P450 enzymes involved in various endogenous biomolecules biosynthesis. Here, we present an in‐depth examination of the kinetics governing the reduction of human AdxR by NADH or NADPH. Our results highlight the efficiency of human AdxR when utilizing NADPH as a flavin reducing agent. Nevertheless, akin to related flavoenzymes such as cytochrome P450 reductase, we observe that low NADPH concentrations hinder flavin reduction due to intricate equilibrium reactions between the enzyme and its substrate/product. Remarkably, the presence of MgCl2 suppresses this complex kinetic behavior by decreasing NADPH binding to oxidized AdxR, effectively transforming AdxR into a classical Michaelis‐Menten enzyme. We propose that the addition of MgCl2 may be adapted for studying the reductive half‐reactions of other flavoenzymes with NADPH. Furthermore, in vitro experiments provide evidence that the reduction of the yeast flavin monooxygenase Coq6p relies on an electron transfer chain comprising NADPH‐AdxR‐Yah1p‐Coq6p, where Yah1p shuttles electrons between AdxR and Coq6p. This discovery explains the previous in vivo observation that Yah1p and the AdxR homolog, Arh1p, are required for the biosynthesis of coenzyme Q in yeast.
Title: Activation of Coq6p, a FAD Monooxygenase Involved in Coenzyme Q Biosynthesis, by Adrenodoxin Reductase/Ferredoxin
Description:
AbstractAdrenodoxin reductase (AdxR) plays a pivotal role in electron transfer, shuttling electrons between NADPH and iron/sulfur adrenodoxin proteins in mitochondria.
This electron transport system is essential for P450 enzymes involved in various endogenous biomolecules biosynthesis.
Here, we present an in‐depth examination of the kinetics governing the reduction of human AdxR by NADH or NADPH.
Our results highlight the efficiency of human AdxR when utilizing NADPH as a flavin reducing agent.
Nevertheless, akin to related flavoenzymes such as cytochrome P450 reductase, we observe that low NADPH concentrations hinder flavin reduction due to intricate equilibrium reactions between the enzyme and its substrate/product.
Remarkably, the presence of MgCl2 suppresses this complex kinetic behavior by decreasing NADPH binding to oxidized AdxR, effectively transforming AdxR into a classical Michaelis‐Menten enzyme.
We propose that the addition of MgCl2 may be adapted for studying the reductive half‐reactions of other flavoenzymes with NADPH.
Furthermore, in vitro experiments provide evidence that the reduction of the yeast flavin monooxygenase Coq6p relies on an electron transfer chain comprising NADPH‐AdxR‐Yah1p‐Coq6p, where Yah1p shuttles electrons between AdxR and Coq6p.
This discovery explains the previous in vivo observation that Yah1p and the AdxR homolog, Arh1p, are required for the biosynthesis of coenzyme Q in yeast.

Related Results

Effect of Artemisinin on the Redox System of NADPH/FNR/Ferredoxin from Malaria Parasites
Effect of Artemisinin on the Redox System of NADPH/FNR/Ferredoxin from Malaria Parasites
FNR and ferredoxin constitute a redox cascade, which provides reducing power in the plastid of malaria parasites. Recently, mutation of ferredoxin (D97Y) was reported to be strongl...
Cross-Sectional Study of the Fad Diet among Office Workers in Mongolia
Cross-Sectional Study of the Fad Diet among Office Workers in Mongolia
A fad diet is a trendy dietary pattern that promises quick and easy weight loss. It has become popular among people due to increasing obesity and social media. The aim of the study...
Interaction of Flavin Adenine Dinucleotide (FAD) with a Glassy Carbon Electrode Surface
Interaction of Flavin Adenine Dinucleotide (FAD) with a Glassy Carbon Electrode Surface
AbstractThe interaction of flavin adenine dinucleotide (FAD) with a glassy carbon electrode (GCE) surface was investigated in terms of the FAD adsorption thermodynamics and kinetic...
Public Speaking of Regional Children's Forum (FAD) in West Java Province
Public Speaking of Regional Children's Forum (FAD) in West Java Province
The research was conducted because the West Java Province DP3AKB formed the West Java Regional Children’s Forum (FAD) on September 24, 2004 for public to involve in providing socia...
Physiology, biochemistry, and specific inhibitors of CH4, NH4+, and CO oxidation by methanotrophs and nitrifiers
Physiology, biochemistry, and specific inhibitors of CH4, NH4+, and CO oxidation by methanotrophs and nitrifiers
Ammonia oxidizers (family Nitrobacteraceae) and methanotrophs (family Methylococcaceae) oxidize CO and CH4 to CO2 and NH4+ to NO2-. However, the relative contributions of the two g...
DIFFERENT ASPECTS OF 5α‐REDUCTASE DEFICIENCY IN MALE PSEUDOHERMAPHRODITISM AND HYPOTHYROIDISM
DIFFERENT ASPECTS OF 5α‐REDUCTASE DEFICIENCY IN MALE PSEUDOHERMAPHRODITISM AND HYPOTHYROIDISM
SUMMARYThe 5α‐reductase activity that mediates the transformation of testosterone to dihydrotestosterone in various anatomical sites of human beings, has been studied in different ...
Biosynthesis of selected natural products from entomopathogenic bacteria
Biosynthesis of selected natural products from entomopathogenic bacteria
This work comprises the investigation of four different biosynthesis gene clusters from Xenorhabdus. Xenorhabdus is an entomopathogenic bacterium that lives in mutualistic symbiosi...
Coenzyme A metabolism
Coenzyme A metabolism
The metabolism of coenzyme A and control of its synthesis are reviewed. Pantothenate kinase is an important rate-controlling enzyme in the synthetic pathway of all tissues studied ...

Back to Top