AbstractThe branched respiratory chain in mitochondria from the halotolerant yeast Debaryomyces hansenii contains the classical complexes I, II, III and IV plus a cyanide-insensitive, AMP-activated, alternative-oxidase (AOX). Two additional alternative oxidoreductases were found in this organism: an alternative NADH dehydrogenase (NDH2e) and a mitochondrial isoform of glycerol-phosphate dehydrogenase (MitGPDH). These monomeric enzymes lack proton pump activity. They are located on the outer face of the inner mitochondrial membrane. NDH2e oxidizes exogenous NADH in a rotenone-insensitive, flavone-sensitive, process. AOX seems to be constitutive; nonetheless, most electrons are transferred to the cytochromic pathway. Respiratory supercomplexe...
AbstractIn animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory c...
AbstractA cDNA clone encoding a mitochondrial NADH dehydrogenase from Neurospora crassa was sequence...
The energy-dissipating alternative oxydase (AOX) from Hansenula anomala was expressed in Saccharomyc...
AbstractThe branched respiratory chain in mitochondria from the halotolerant yeast Debaryomyces hans...
AbstractIn Yarrowia lipolytica, mitochondria contain a branched respiratory chain constituted by the...
<p><i>Debaryomyces hansenii</i> has a proton-pumping complex I, a canonical proton-pumping cytochrom...
AbstractMitochondrial proton-translocating NADH-dehydrogenase (complex I) is one of the largest and ...
Differences between the respiratory chain of the fungus Paracoccidioides brasiliensis and its mammal...
AbstractThe mitochondria of the respiratory yeast Kluyveromyces lactis are able to reoxidize cytosol...
AbstractUstilago maydis mitochondria contain the four classical components of the electron transport...
nad genes encoding subunits of the NADH dehydrogenase complex 1 have been revealed in the yeast Deba...
AbstractThe respiratory chain of the mitochondrial inner membrane includes a proton-pumping enzyme, ...
All organisms require energy for critical life processes, starting from the unicellular prokaryotes ...
AbstractIn the branched mitochondrial respiratory chain from Yarrowia lipolytica there are two alter...
AbstractThe obligate aerobic yeast Yarrowia lipolytica is introduced as a powerful new model for the...
AbstractIn animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory c...
AbstractA cDNA clone encoding a mitochondrial NADH dehydrogenase from Neurospora crassa was sequence...
The energy-dissipating alternative oxydase (AOX) from Hansenula anomala was expressed in Saccharomyc...
AbstractThe branched respiratory chain in mitochondria from the halotolerant yeast Debaryomyces hans...
AbstractIn Yarrowia lipolytica, mitochondria contain a branched respiratory chain constituted by the...
<p><i>Debaryomyces hansenii</i> has a proton-pumping complex I, a canonical proton-pumping cytochrom...
AbstractMitochondrial proton-translocating NADH-dehydrogenase (complex I) is one of the largest and ...
Differences between the respiratory chain of the fungus Paracoccidioides brasiliensis and its mammal...
AbstractThe mitochondria of the respiratory yeast Kluyveromyces lactis are able to reoxidize cytosol...
AbstractUstilago maydis mitochondria contain the four classical components of the electron transport...
nad genes encoding subunits of the NADH dehydrogenase complex 1 have been revealed in the yeast Deba...
AbstractThe respiratory chain of the mitochondrial inner membrane includes a proton-pumping enzyme, ...
All organisms require energy for critical life processes, starting from the unicellular prokaryotes ...
AbstractIn the branched mitochondrial respiratory chain from Yarrowia lipolytica there are two alter...
AbstractThe obligate aerobic yeast Yarrowia lipolytica is introduced as a powerful new model for the...
AbstractIn animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory c...
AbstractA cDNA clone encoding a mitochondrial NADH dehydrogenase from Neurospora crassa was sequence...
The energy-dissipating alternative oxydase (AOX) from Hansenula anomala was expressed in Saccharomyc...