AbstractIn animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory complexes in a linear respiratory chain. In contrast, most fungi utilise branched respiratory chains. These consist of alternative NADH dehydrogenases, which catalyse rotenone insensitive oxidation of matrix NADH or enable cytoplasmic NADH to be used directly. Many also contain an alternative oxidase that probably accepts electrons directly from ubiquinol. A few fungi lack Complex I. Although the alternative components are non-energy conserving, their organisation within the fungal electron transfer chain ensures that the transfer of electrons from NADH to molecular oxygen is generally coupled to proton translocation through at least one site....
During aerobic respiration, cells produce energy through oxidative phosphorylation, which includes a...
In this study we demonstrated that mitochondria of Candida parapsilosis contain a constitutive ubiqu...
AbstractIn this study we demonstrated that mitochondria of Candida parapsilosis contain a constituti...
AbstractIn animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory c...
In animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory complexes...
Certain phytopathogenic fungi are able to express alternative NADH- and quinol-oxidising enzymes tha...
Differences between the respiratory chain of the fungus Paracoccidioides brasiliensis and its mammal...
<div><p>Fungal electron transport systems (ETS) are branched, involving alternative NADH dehydrogena...
Debate still surrounds the physiological roles of the alternative respiratory enzymes found in many ...
Filamentous fungi are arguably the most industrially important group of microorganisms. Production p...
AbstractCertain phytopathogenic fungi are able to express alternative NADH- and quinol-oxidising enz...
This article describes the first detailed analysis of mitochondrial electron transfer and oxidative ...
AbstractUstilago maydis mitochondria contain the four classical components of the electron transport...
The mitochondrial electron transport chain consists of the classical protein complexes (I–IV) that f...
AbstractThe respiratory chain of the mitochondrial inner membrane includes a proton-pumping enzyme, ...
During aerobic respiration, cells produce energy through oxidative phosphorylation, which includes a...
In this study we demonstrated that mitochondria of Candida parapsilosis contain a constitutive ubiqu...
AbstractIn this study we demonstrated that mitochondria of Candida parapsilosis contain a constituti...
AbstractIn animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory c...
In animals, electron transfer from NADH to molecular oxygen proceeds via large respiratory complexes...
Certain phytopathogenic fungi are able to express alternative NADH- and quinol-oxidising enzymes tha...
Differences between the respiratory chain of the fungus Paracoccidioides brasiliensis and its mammal...
<div><p>Fungal electron transport systems (ETS) are branched, involving alternative NADH dehydrogena...
Debate still surrounds the physiological roles of the alternative respiratory enzymes found in many ...
Filamentous fungi are arguably the most industrially important group of microorganisms. Production p...
AbstractCertain phytopathogenic fungi are able to express alternative NADH- and quinol-oxidising enz...
This article describes the first detailed analysis of mitochondrial electron transfer and oxidative ...
AbstractUstilago maydis mitochondria contain the four classical components of the electron transport...
The mitochondrial electron transport chain consists of the classical protein complexes (I–IV) that f...
AbstractThe respiratory chain of the mitochondrial inner membrane includes a proton-pumping enzyme, ...
During aerobic respiration, cells produce energy through oxidative phosphorylation, which includes a...
In this study we demonstrated that mitochondria of Candida parapsilosis contain a constitutive ubiqu...
AbstractIn this study we demonstrated that mitochondria of Candida parapsilosis contain a constituti...