For microoganisms to live under extreme physical conditions requires important adaptations of the cells. In many organisms the use of Na+ instead of protons as coupling ion in energy transduction is associated with such adaptation. This review focuses on the enzymes that are responsible for the generation and utilization of Na+ gradients in extremophilic microorganisms. Aspects that are dealt with include: bioenergetics and ion homeostasis in extremophilic Bacteria and Archaea; the molecular mechanism of Na+ translocation; and (dis)advantages of Na+ as coupling ion in energy transduction
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
Protons and sodium ions are the most commonly used coupling ions in energy transduction in bacteria ...
The cytoplasmic membrane of bacteria and archaea determine to a large extent the composition of the ...
For microorganisms to live under extreme physical conditions requires important adaptations of the c...
For microorganisms to live under extreme physical conditions requires important adaptations of the c...
AbstractAll living cells routinely expel Na+ ions, maintaining lower concentration of Na+ in the cyt...
Protons and sodium ions are the major coupling ions in membrane associated bioenergetic processes in...
The thermophilic, peptidolytic, anaerobic bacterium Closidium fervidus is unable to generate a pH gr...
The ion and particularly the proton and sodium ion permeabilities of cytoplasmic membranes play cruc...
Protons and sodium ions are the only used coupling ions in energy transduction in Bacteria and Archa...
AbstractThe nature of the ions that are translocated by Escherichia coli and Paracoccus denitrifican...
Bioenergetics and solute uptake under extreme conditions The ion and particularly the proton and sod...
Strain LBS3 is a novel anaerobic thermoalkaliphilic bacterium that grows optimally at pH 9.5 and 50&...
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
As inhabitants of soda lakes, Thioalkalivibrio versutus are halo- and alkaliphilic bacteria that hav...
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
Protons and sodium ions are the most commonly used coupling ions in energy transduction in bacteria ...
The cytoplasmic membrane of bacteria and archaea determine to a large extent the composition of the ...
For microorganisms to live under extreme physical conditions requires important adaptations of the c...
For microorganisms to live under extreme physical conditions requires important adaptations of the c...
AbstractAll living cells routinely expel Na+ ions, maintaining lower concentration of Na+ in the cyt...
Protons and sodium ions are the major coupling ions in membrane associated bioenergetic processes in...
The thermophilic, peptidolytic, anaerobic bacterium Closidium fervidus is unable to generate a pH gr...
The ion and particularly the proton and sodium ion permeabilities of cytoplasmic membranes play cruc...
Protons and sodium ions are the only used coupling ions in energy transduction in Bacteria and Archa...
AbstractThe nature of the ions that are translocated by Escherichia coli and Paracoccus denitrifican...
Bioenergetics and solute uptake under extreme conditions The ion and particularly the proton and sod...
Strain LBS3 is a novel anaerobic thermoalkaliphilic bacterium that grows optimally at pH 9.5 and 50&...
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
As inhabitants of soda lakes, Thioalkalivibrio versutus are halo- and alkaliphilic bacteria that hav...
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
Protons and sodium ions are the most commonly used coupling ions in energy transduction in bacteria ...
The cytoplasmic membrane of bacteria and archaea determine to a large extent the composition of the ...