Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by producing a myriad of equally halotolerant enzymes. Structural haloadaptation of these enzymes adept to thriving under high-salt environments, though are not fully understood. Herein, the study attempts an in silico investigation to identify and comprehend the evolutionary structural adaptation of a halotolerant dehalogenase, DehHX (GenBank accession number: KR297065) of the halotolerant Pseudomonas halophila, over its non-halotolerant counterpart, DehMX1 (GenBank accession number KY129692) produced by Pseudomonas aeruginosa. GC content of the halotolerant DehHX DNA sequence was distinctively higher (58.9%) than the non-halotolerant dehalogenases ...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
Halogenated compounds represent potential long-term threats to human well-being and health and, ther...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Background: Halophilic bacteria have shown their significance in industrial production of polyhydrox...
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...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
Halogenated compounds represent potential long-term threats to human well-being and health and, ther...
International audienceProteins from halophilic archaea, which live in extreme saline conditions, hav...
Background: Halophilic bacteria have shown their significance in industrial production of polyhydrox...
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...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...
<p>Halophilic organisms inhabit hypersaline environments where the extreme ionic conditions and osmo...
International audienceExtreme halophilic Archaea thrive in high salt, where, through proteomic adapt...