Bacillus subtilis lipase loses activity above pH 10.5 and below pH 6.0. However, at low pH, i.e. below pH 5.0, the lipase acquires remarkable thermostability. Activity was unaltered for 2 h at 323 K at pH 4.0-5.0, although at pH values above 7.0 the activity was lost rapidly within minutes. Circular-dichroism studies indicate significant changes in the tertiary structure of the lipase, whereas the secondary-structural content remained unaltered. To elucidate the structural basis of the enhanced thermostability, three different forms have been crystallized at low pH along with three crystal forms of two thermostable mutants obtained using a directed-evolution approach
Thermostable lipase produced by a genotypically identified extremophilic Bacillus subtilis NS 8 was ...
This article reviews our present knowledge on the extracellular lipolytic enzymes LipA and LipB from...
Thermostable T1 lipase from Geobacillus zalihae has been crystallized using counter-diffusion method...
Understanding the structural basis of altered properties of proteins due to changes in temperature o...
Previously, Lipase A from Bacillus subtilis was subjected to in vitro directed evolution using itera...
Previously, Lipase A from Bacillus subtilis was subjected to in vitro directed evolution using itera...
Variation in gene sequences generated by directed evolution approaches often does not assure a minim...
Temperature stability of Bacillus subtilis lipase mutant crystal structures obtained from PDB genera...
Rational and in vitro evolutionary approaches to improve either protein stability or aggregation res...
Single crystals of the lipase from Bacillus subtilis have been obtained using a mixture of polyethyl...
Purified thermostable recombinant L2 lipase from Bacillus sp. L2 was crystallized by the counter-dif...
Bacillus subtilis secretes the lipolytic enzymes LipA and LipB. We show here that they are different...
The structural origin of enzyme cold-adaptation has been the subject of considerable research effort...
An organic solvent-tolerant lipase from Bacillus sp. strain 42 was crystallized using the capillary-...
The crystallization of proteins makes it possible to determine their structure by X-ray crystallogra...
Thermostable lipase produced by a genotypically identified extremophilic Bacillus subtilis NS 8 was ...
This article reviews our present knowledge on the extracellular lipolytic enzymes LipA and LipB from...
Thermostable T1 lipase from Geobacillus zalihae has been crystallized using counter-diffusion method...
Understanding the structural basis of altered properties of proteins due to changes in temperature o...
Previously, Lipase A from Bacillus subtilis was subjected to in vitro directed evolution using itera...
Previously, Lipase A from Bacillus subtilis was subjected to in vitro directed evolution using itera...
Variation in gene sequences generated by directed evolution approaches often does not assure a minim...
Temperature stability of Bacillus subtilis lipase mutant crystal structures obtained from PDB genera...
Rational and in vitro evolutionary approaches to improve either protein stability or aggregation res...
Single crystals of the lipase from Bacillus subtilis have been obtained using a mixture of polyethyl...
Purified thermostable recombinant L2 lipase from Bacillus sp. L2 was crystallized by the counter-dif...
Bacillus subtilis secretes the lipolytic enzymes LipA and LipB. We show here that they are different...
The structural origin of enzyme cold-adaptation has been the subject of considerable research effort...
An organic solvent-tolerant lipase from Bacillus sp. strain 42 was crystallized using the capillary-...
The crystallization of proteins makes it possible to determine their structure by X-ray crystallogra...
Thermostable lipase produced by a genotypically identified extremophilic Bacillus subtilis NS 8 was ...
This article reviews our present knowledge on the extracellular lipolytic enzymes LipA and LipB from...
Thermostable T1 lipase from Geobacillus zalihae has been crystallized using counter-diffusion method...