Abstract Objectives Protein engineering has been employed to successfully improve organic solvent resistance of enzymes. Exploration of nature’s full potential (how many beneficial positions/beneficial substitutions of the target enzyme) to improve organic solvent resistance of enzymes by a systematic study was performed. Results We report the results of screening the previously generated BSLA (Bacillus subtilis lipase A)-SSM (site saturation mutagenesis) library (covering the full natural diversity of BSLA with one amino acid exchange) in presence of three cosolvents. The potential of single amino acid substitution that nature offers to improve the cosolvent resistance of BSLA was determined by analyzing the number of beneficial positions/...
Given current powerful tools for protein molecular engineering and a continually improving understan...
Given current powerful tools for protein molecular engineering and a continually improving understan...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...
Despite the significant advances in the field of protein engineering, general design principles to i...
Our desire to design enzymes resistant to organic cosolvents is still challenged by our level of mol...
Our desire to design enzymes resistant to organic cosolvents is still challenged by our level of mol...
The naturally existing enzymes have been evolved to work efficiently in aqueous environment of their...
The naturally existing enzymes have been evolved to work efficiently in aqueous environment of their...
Ionic liquids (ILs) are attractive (co-)solvents for biocatalysis. However, in high concentration (>...
Expanding synthetic capabilities to routinely employ enzymes in organic solvents (OSs) is a dream fo...
Improving an enzyme’s (thermo )stability or tolerance against solvents and detergents is highly rele...
Biocatalysis for the synthesis of fine chemicals is highly attractive but usually requires organic (...
Understanding of the structural and dynamic properties of enzymes in non-aqueous media (e.g., ionic ...
Enzyme activity is often dramatically reduced in polar organic solvents, even under conditions where...
Enzyme activity is often dramatically reduced in polar organic solvents, even under conditions where...
Given current powerful tools for protein molecular engineering and a continually improving understan...
Given current powerful tools for protein molecular engineering and a continually improving understan...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...
Despite the significant advances in the field of protein engineering, general design principles to i...
Our desire to design enzymes resistant to organic cosolvents is still challenged by our level of mol...
Our desire to design enzymes resistant to organic cosolvents is still challenged by our level of mol...
The naturally existing enzymes have been evolved to work efficiently in aqueous environment of their...
The naturally existing enzymes have been evolved to work efficiently in aqueous environment of their...
Ionic liquids (ILs) are attractive (co-)solvents for biocatalysis. However, in high concentration (>...
Expanding synthetic capabilities to routinely employ enzymes in organic solvents (OSs) is a dream fo...
Improving an enzyme’s (thermo )stability or tolerance against solvents and detergents is highly rele...
Biocatalysis for the synthesis of fine chemicals is highly attractive but usually requires organic (...
Understanding of the structural and dynamic properties of enzymes in non-aqueous media (e.g., ionic ...
Enzyme activity is often dramatically reduced in polar organic solvents, even under conditions where...
Enzyme activity is often dramatically reduced in polar organic solvents, even under conditions where...
Given current powerful tools for protein molecular engineering and a continually improving understan...
Given current powerful tools for protein molecular engineering and a continually improving understan...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...