AbstractBackground: The proteins of halophilic archaea require high salt concentrations both for stability and for activity, whereas they denature at low ionic strength. The structural basis for this phenomenon is not yet well understood. The crystal structure of dihydrofolate reductase (DHFR) from Haloferax volcanii (hv-DHFR) reported here provides the third example of a structure of a protein from a halophilic organism. The enzyme is considered moderately halophilic, as it retains activity and secondary structure at monovalent salt concentrations as low as 0.5 M.Results: The crystal structure of hv-DHFR has been determined at 2.6 å resolution and reveals the same overall fold as that of other DHFRs. The structure is in the apo state, with...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
Protein-solvent interactions govern the behaviour of proteins isolated from extreme halophiles. In t...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
AbstractBackground: The proteins of halophilic archaea require high salt concentrations both for sta...
Dihydrofolate reductase is an enzyme that catalyzes the reaction of dihydrofolate to tetrahydrofolat...
The studies of enzymes from extreme sources have gained significance due to their increasing potenti...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Background: Halophiles are extremophilic microorganisms growing optimally at high salt concentration...
Search for new enzymes of industrial relevance, bestowed with novel properties continues to be a des...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
Protein-solvent interactions govern the behaviour of proteins isolated from extreme halophiles. In t...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
AbstractBackground: The proteins of halophilic archaea require high salt concentrations both for sta...
Dihydrofolate reductase is an enzyme that catalyzes the reaction of dihydrofolate to tetrahydrofolat...
The studies of enzymes from extreme sources have gained significance due to their increasing potenti...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Background: Halophiles are extremophilic microorganisms growing optimally at high salt concentration...
Search for new enzymes of industrial relevance, bestowed with novel properties continues to be a des...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
Protein-solvent interactions govern the behaviour of proteins isolated from extreme halophiles. In t...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...