Halophiles are extremophiles that thrive in environments with very high concentrations of salt. Although the salt reliance and physiology of these extremophiles have been widely investigated, the molecular working mechanisms of their enzymes under salty conditions have been little explored.-nitrophenyl acetate, consistent with the basic character of an esterase. The optimal esterase activities were found to be at pH 9.5 and [NaCl] = 3.4 M or [KCl] = 3.0 M and at around 45°C. Interestingly, the hydrolysis activity showed a clear reversibility against changes in salt concentration. At the ambient temperature of 22°C, enzyme systems working under the optimal salt concentrations were very stable against time. Increase in temperature increased t...
Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by produ...
The present study was conducted to investigate the capability of Haloarcula marismortui to synthesiz...
Most of the Earth’s biosphere is cold and is populated by cold-adapted microorganisms. To explore th...
Halophiles are extremophiles that thrive in environments with very high concentrations of salt. Alth...
Background: Halophiles are extremophiles that thrive in environments with very high concentrations o...
Search for new enzymes of industrial relevance, bestowed with novel properties continues to be a des...
A novel esterase gene, e69, was cloned from Erythrobacter seohaensis SW-135, which was isolated from...
Halophilic organisms have adapted to survive in high salt environments, where mesophilic organisms w...
Background: Halophiles are extremophilic microorganisms growing optimally at high salt concentration...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
Halophiles are perceived as an excellent source of novel enzymes possessing inherent ability to func...
<div><p>Halophilic proteins have greater abundance of acidic over basic and very low bulky hydrophob...
Proteins from extremophiles have the ability to fold and remain stable in their extreme environment....
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...
Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by produ...
The present study was conducted to investigate the capability of Haloarcula marismortui to synthesiz...
Most of the Earth’s biosphere is cold and is populated by cold-adapted microorganisms. To explore th...
Halophiles are extremophiles that thrive in environments with very high concentrations of salt. Alth...
Background: Halophiles are extremophiles that thrive in environments with very high concentrations o...
Search for new enzymes of industrial relevance, bestowed with novel properties continues to be a des...
A novel esterase gene, e69, was cloned from Erythrobacter seohaensis SW-135, which was isolated from...
Halophilic organisms have adapted to survive in high salt environments, where mesophilic organisms w...
Background: Halophiles are extremophilic microorganisms growing optimally at high salt concentration...
Proteins from halophilic organisms, especially those who adopt ‘salt in’ survival strategy, i.e. acc...
Halophiles are perceived as an excellent source of novel enzymes possessing inherent ability to func...
<div><p>Halophilic proteins have greater abundance of acidic over basic and very low bulky hydrophob...
Proteins from extremophiles have the ability to fold and remain stable in their extreme environment....
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...
Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by produ...
The present study was conducted to investigate the capability of Haloarcula marismortui to synthesiz...
Most of the Earth’s biosphere is cold and is populated by cold-adapted microorganisms. To explore th...