AbstractNep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the haloalkaliphilic archaeon N. magadii that exhibits optimal activity and stability in salt-saturated solutions. In this work, the effect of salt on the function and structure of Nep was investigated. In absence of salt, Nep became unfolded and aggregated, leading to the loss of activity. The enzyme did not recover its structural and functional properties even after restoring the ideal conditions for catalysis. At salt concentrations higher than 1 M (NaCl), Nep behaved as monomers in solution and its enzymatic activity displayed a nonlinear concave-up dependence with salt concentration resulting in a 20-fold activation at 4 M NaCl. Although tr...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
Nep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the haloalk...
AbstractNep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the...
Nep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the haloalk...
Halolysins are subtilisin-like extracellular proteases produced by haloarchaea that possess unique p...
The secreted extracellular subtilase SR5-3 from Halobacillus sp. bacterium, isolated from the high-s...
Search for new enzymes of industrial relevance, bestowed with novel properties continues to be a des...
Halophilic enzymes contain a large number of acidic amino acids and marginal large hydrophobic amino...
The gene encoding the protease Nep secreted by the haloalkaliphilic archaeon Natrialba magadii was c...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
Molecular systems described for Archaea show primitive and simple characteristics, compared to their...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
Halophiles are extremophiles that thrive in environments with very high concentrations of salt. Alth...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
Nep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the haloalk...
AbstractNep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the...
Nep (Natrialba magadii extracellular protease) is a halolysin-like peptidase secreted by the haloalk...
Halolysins are subtilisin-like extracellular proteases produced by haloarchaea that possess unique p...
The secreted extracellular subtilase SR5-3 from Halobacillus sp. bacterium, isolated from the high-s...
Search for new enzymes of industrial relevance, bestowed with novel properties continues to be a des...
Halophilic enzymes contain a large number of acidic amino acids and marginal large hydrophobic amino...
The gene encoding the protease Nep secreted by the haloalkaliphilic archaeon Natrialba magadii was c...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
Molecular systems described for Archaea show primitive and simple characteristics, compared to their...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
Halophiles are extremophiles that thrive in environments with very high concentrations of salt. Alth...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...