Spectroscopic and calorimetric methods were employed to assess the stability and the folding aspect of a novel recombinant alkaline-stable lipase KV1 from Acinetobacter haemolyticus under varying pH and temperature. Data on far ultraviolet-circular dichroism of recombinant lipase KV1 under two alkaline conditions (pH 8.0 and 12.0) at 40 °C reveal strong negative ellipticities at 208, 217, 222 nm, implying its secondary structure belonging to a α + β class with 47.3 and 39.0% ellipticity, respectively. Results demonstrate that lipase KV1 adopts its most stable conformation at pH 8.0 and 40 °C. Conversely, the protein assumes a random coil structure at pH 4.0 and 80 °C, evident from a strong negative peak at ∼ 200 nm. This blue shift suggests...
Lipases are known for their versatility in addition to their ability to digest fat. They can be used...
The interest on alkaline-stable lipases by the scientific community is increasing due to its great p...
5M mutant lipase was derived through cumulative mutagenesis of amino acid residues (D43E/T118N/E226D...
Interests in Acinetobacter haemolyticus lipases are showing an increasing trend concomitant with gro...
Understanding the structural basis of altered properties of proteins due to changes in temperature o...
We previously reported on a mutant lipase KV1 (Mut-LipKV1) from Acinetobacter haemolyticus which opt...
Alkaline-stable lipases are highly valuable biocatalysts that catalyze reactions under highly basic ...
The use of microbial enzymes as biocatalysts for a myriad of commercial processes are currently tren...
A comparative structure analysis between space- and an Earth-grown T1 recombinant lipase from Geobac...
Rational and in vitro evolutionary approaches to improve either protein stability or aggregation res...
The study reports the purification and comprehensive biochemical characterization of a novel lipase ...
Psychrophilic organisms and their enzymes have increasingly attracted the attention of researchers d...
Bacillus subtilis lipase loses activity above pH 10.5 and below pH 6.0. However, at low pH, i.e. bel...
Thermostable T1 lipase from Geobacillus zalihae has been crystallized using counter-diffusion method...
A novel alkaline lipase-producing strain 1-7 identified as Acinetobacter calcoaceticus was isolated ...
Lipases are known for their versatility in addition to their ability to digest fat. They can be used...
The interest on alkaline-stable lipases by the scientific community is increasing due to its great p...
5M mutant lipase was derived through cumulative mutagenesis of amino acid residues (D43E/T118N/E226D...
Interests in Acinetobacter haemolyticus lipases are showing an increasing trend concomitant with gro...
Understanding the structural basis of altered properties of proteins due to changes in temperature o...
We previously reported on a mutant lipase KV1 (Mut-LipKV1) from Acinetobacter haemolyticus which opt...
Alkaline-stable lipases are highly valuable biocatalysts that catalyze reactions under highly basic ...
The use of microbial enzymes as biocatalysts for a myriad of commercial processes are currently tren...
A comparative structure analysis between space- and an Earth-grown T1 recombinant lipase from Geobac...
Rational and in vitro evolutionary approaches to improve either protein stability or aggregation res...
The study reports the purification and comprehensive biochemical characterization of a novel lipase ...
Psychrophilic organisms and their enzymes have increasingly attracted the attention of researchers d...
Bacillus subtilis lipase loses activity above pH 10.5 and below pH 6.0. However, at low pH, i.e. bel...
Thermostable T1 lipase from Geobacillus zalihae has been crystallized using counter-diffusion method...
A novel alkaline lipase-producing strain 1-7 identified as Acinetobacter calcoaceticus was isolated ...
Lipases are known for their versatility in addition to their ability to digest fat. They can be used...
The interest on alkaline-stable lipases by the scientific community is increasing due to its great p...
5M mutant lipase was derived through cumulative mutagenesis of amino acid residues (D43E/T118N/E226D...