International audienceProteins from halophilic archaea, which live in extreme saline conditions, have evolved to remain folded, active and stable at very high ionic strengths. Understanding the mechanism of haloadaptation is the first step toward engineering of halostable biomolecules. Amylases are one of the main enzymes used in industry. Yet, no three-dimensional structure has been experimentally resolved for α-amylases from halophilic archaea. In this study, homology structure modeling of α-amylases from the halophilic archaea Haloarcula marismortui, Haloarcula hispanica, and Halalkalicoccus jeotgali were performed. The resulting models were subjected to energy minimization, evaluation, and structural analysis. Calculations of the amino ...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
Intracellular and extracellular proteins from halophilic archaea face very saline conditions and mus...
Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by produ...
Background: Halophiles are extremophilic microorganisms growing optimally at high salt concentration...
Halophiles are perceived as an excellent source of novel enzymes possessing inherent ability to func...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
183 p.Adaptation of organisms to extreme halophilic environments (> 1 ¿ 2 M) occurs through theaccum...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
Intracellular and extracellular proteins from halophilic archaea face very saline conditions and mus...
Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by produ...
Background: Halophiles are extremophilic microorganisms growing optimally at high salt concentration...
Halophiles are perceived as an excellent source of novel enzymes possessing inherent ability to func...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
183 p.Adaptation of organisms to extreme halophilic environments (> 1 ¿ 2 M) occurs through theaccum...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...