International audienceHalophilic proteins subjected to below about 15% salt in vitro denature through misfolding, aggregation and/or precipitation. Halobacteria, however, have been detected in environments of fluctuating salinity such as coastal salterns and even around fresh water springs in the depths of the Dead Sea. In order to identify the underlying mechanisms of low salt survival, we explored the reactivation capacity of Halobacterium (Hbt) salinarum sub-populations after incubation in low salt media and recovery in physiological salt. Respiratory oxygen consumption was assessed in stressed cells and cell viability was estimated by Live/Dead staining and flow cytometry. In vivo neutron scattering experiments showed that the recovery ...
The ability of bacteria to adapt to external osmotic changes is fundamental for their survival. Halo...
Les systèmes moléculaires décrits chez les Archaea mettent en évidence un caractère primitif et une ...
Abstract Halophilic archaea thriving in hypersaline environments, such as salt lakes, offer models f...
International audienceHalophilic proteins subjected to below about 15% salt in vitro denature throug...
International audienceHalobacterium salinarum is an extreme halophile archaeon with an absolute requ...
International audienceExtreme halophiles are microorganisms adapted to low water activity living at ...
Extreme halophiles are microorganisms adapted to low water activity living at the upper salt concent...
Molecular systems described for Archaea show primitive and simple characteristics, compared to their...
Halophilic bacteria adapted to high salinity (low water activity) provide insight into how they natu...
The halophilic gamma-proteobacterium Halomonas elongata DSM 2581(T) thrives at salt concentrations w...
We performed an in-depth proteome analysis of the haloarchaeal model organism Haloferax volcanii und...
International audienceHalophilic archaea thriving in hypersaline environments, such as salt lakes, o...
<div><p>The ability of bacteria to adapt to external osmotic changes is fundamental for their surviv...
Halobacterium salinarum NRC-1 is an extremophile that grows optimally at 4.3 M NaCl concentration. I...
In-depth proteome analysis of the haloarchaeal model organism Haloferax volcanii has been performed ...
The ability of bacteria to adapt to external osmotic changes is fundamental for their survival. Halo...
Les systèmes moléculaires décrits chez les Archaea mettent en évidence un caractère primitif et une ...
Abstract Halophilic archaea thriving in hypersaline environments, such as salt lakes, offer models f...
International audienceHalophilic proteins subjected to below about 15% salt in vitro denature throug...
International audienceHalobacterium salinarum is an extreme halophile archaeon with an absolute requ...
International audienceExtreme halophiles are microorganisms adapted to low water activity living at ...
Extreme halophiles are microorganisms adapted to low water activity living at the upper salt concent...
Molecular systems described for Archaea show primitive and simple characteristics, compared to their...
Halophilic bacteria adapted to high salinity (low water activity) provide insight into how they natu...
The halophilic gamma-proteobacterium Halomonas elongata DSM 2581(T) thrives at salt concentrations w...
We performed an in-depth proteome analysis of the haloarchaeal model organism Haloferax volcanii und...
International audienceHalophilic archaea thriving in hypersaline environments, such as salt lakes, o...
<div><p>The ability of bacteria to adapt to external osmotic changes is fundamental for their surviv...
Halobacterium salinarum NRC-1 is an extremophile that grows optimally at 4.3 M NaCl concentration. I...
In-depth proteome analysis of the haloarchaeal model organism Haloferax volcanii has been performed ...
The ability of bacteria to adapt to external osmotic changes is fundamental for their survival. Halo...
Les systèmes moléculaires décrits chez les Archaea mettent en évidence un caractère primitif et une ...
Abstract Halophilic archaea thriving in hypersaline environments, such as salt lakes, offer models f...