Javascript must be enabled to continue!
Microsomal Electron Transfer in Higher Plants: Cloning and Heterologous Expression of NADH-Cytochromeb5Reductase from Arabidopsis
View through CrossRef
Abstract
AtCBR, a cDNA encoding NADH-cytochrome (Cyt)b5 reductase, and AtB5-A and AtB5-B, two cDNAs encoding Cyt b5, were isolated from Arabidopsis. The primary structure deduced from the AtCBR cDNA was 40% identical to those of the NADH-Cyt b5reductases of yeast and mammals. A recombinant AtCBR protein prepared using a baculovirus system exhibited typical spectral properties of NADH-Cyt b5 reductase and was used to study its electron-transfer activity. The recombinant NADH-Cytb5 reductase was functionally active and displayed strict specificity to NADH for the reduction of a recombinant Cyt b5 (AtB5-A), whereas no Cytb5 reduction was observed when NADPH was used as the electron donor. Conversely, a recombinant NADPH-Cyt P450 reductase of Arabidopsis was able to reduce Cytb5 with NADPH but not with NADH. To our knowledge, this is the first evidence in higher plants that both NADH-Cyt b5 reductase and NADPH-Cyt P450 reductase can reduce Cyt b5 and have clear specificities in terms of the electron donor, NADH or NADPH, respectively. This substrate specificity of the two reductases is discussed in relation to the NADH- and NADPH-dependent activities of microsomal fatty acid desaturases.
Oxford University Press (OUP)
Title: Microsomal Electron Transfer in Higher Plants: Cloning and Heterologous Expression of NADH-Cytochromeb5Reductase from Arabidopsis
Description:
Abstract
AtCBR, a cDNA encoding NADH-cytochrome (Cyt)b5 reductase, and AtB5-A and AtB5-B, two cDNAs encoding Cyt b5, were isolated from Arabidopsis.
The primary structure deduced from the AtCBR cDNA was 40% identical to those of the NADH-Cyt b5reductases of yeast and mammals.
A recombinant AtCBR protein prepared using a baculovirus system exhibited typical spectral properties of NADH-Cyt b5 reductase and was used to study its electron-transfer activity.
The recombinant NADH-Cytb5 reductase was functionally active and displayed strict specificity to NADH for the reduction of a recombinant Cyt b5 (AtB5-A), whereas no Cytb5 reduction was observed when NADPH was used as the electron donor.
Conversely, a recombinant NADPH-Cyt P450 reductase of Arabidopsis was able to reduce Cytb5 with NADPH but not with NADH.
To our knowledge, this is the first evidence in higher plants that both NADH-Cyt b5 reductase and NADPH-Cyt P450 reductase can reduce Cyt b5 and have clear specificities in terms of the electron donor, NADH or NADPH, respectively.
This substrate specificity of the two reductases is discussed in relation to the NADH- and NADPH-dependent activities of microsomal fatty acid desaturases.
Related Results
Synthetic lethality of
Mycobacterium tuberculosis
NADH dehydrogenases is due to impaired NADH oxidation
Synthetic lethality of
Mycobacterium tuberculosis
NADH dehydrogenases is due to impaired NADH oxidation
ABSTRACT
Type 2 NADH dehydrogenase (Ndh-2) is an oxidative phosphorylation enzyme discussed as a promising drug target in different pathogens, in...
Correlation of Contractile Function of the Rabbit Corpus Cavernosum with NADH Fluorescence
Correlation of Contractile Function of the Rabbit Corpus Cavernosum with NADH Fluorescence
The NADH/NAD ratio is a measure of potential metabolic energy in smooth muscle tissue. Previous studies on bladder smooth muscle demonstrated that during active contraction when en...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
Immunochemical probing of the structure and cofactor of NADH dehydrogenase from Paracoccus denitrificans
Immunochemical probing of the structure and cofactor of NADH dehydrogenase from Paracoccus denitrificans
Monospecific antibody to the respiratory NADH dehydrogenase from Paracoccus denitrificans was prepared by using as antigen specific immunoprecipitates containing NADH dehydrogenase...
Conformational Diversity and Interaction Signatures of NADH across protein families
Conformational Diversity and Interaction Signatures of NADH across protein families
Abstract
Nicotinamide adenine dinucleotide (NADH) is a ubiquitous redox cofactor that participates in a wide range of enzymatic and regulatory processes. These incl...
Abstract 3795: Mitochondrial complex I modulation regulates autophagy and breast cancer progression
Abstract 3795: Mitochondrial complex I modulation regulates autophagy and breast cancer progression
Abstract
Tumor cells express altered metabolic activities often linked to mitochondrial dysfunction. Such mitochondrial defects can inhibit oxidative phosphorylation...
Regulatory Loop between Redox Sensing of the NADH/NAD
+
Ratio by Rex (YdiH) and Oxidation of NADH by NADH Dehydrogenase Ndh in
Bacillus subtilis
Regulatory Loop between Redox Sensing of the NADH/NAD
+
Ratio by Rex (YdiH) and Oxidation of NADH by NADH Dehydrogenase Ndh in
Bacillus subtilis
ABSTRACT
NADH dehydrogenase is a key component of the respiratory chain. It catalyzes the oxidation of NADH by transferring electrons to ubiquinone and estab...

