Random mutagenesis has been used to engineer the protease subtilisin E to function in a highly nonnatural environment-high concentrations of a polar organic solvent. Sequential rounds of mutagenesis and screening have yielded a variant (PC3) that hydrolyzes a peptide substrate 256 times more efficiently than wild-type subtilisin in 60% dimethylformamide. PC3 subtilisin E and other variants containing different combinations of amino acid substitutions are effective catalysts for transesterification and peptide synthesis in dimethylformamide and other organic media. Starting with a variant containing four effective amino acid substitutions (D60N, D97G, Q103R, and N218S; where, for example, D60N represents Asp-60 {rightarrow} Asn), six additio...
A significant enhancement of the applicability of the serine protease subtilisin Bacillus lentus (SB...
The strategy of combined site directed mutagenesis and chemical modification creates chemically modi...
The strategy of combined site directed mutagenesis and chemical modification creates chemically modi...
Random mutagenesis has been used to engineer the protease subtilisin E to function in a highly nonna...
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...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...
Q103R subtilisin E was isolated following random mutagenesis and screening for improved activity in ...
Q103R subtilisin E was isolated following random mutagenesis and screening for improved activity in ...
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...
Many industrial processes used to produce chemicals and pharmaceuticals would benefit from enzymes t...
A significant enhancement of the applicability of the serine protease subtilisin Bacillus lentus (SB...
Many industrial processes used to produce chemicals and pharmaceuticals would benefit from enzymes t...
A significant enhancement of the applicability of the serine protease subtilisin Bacillus lentus (SB...
The strategy of combined site directed mutagenesis and chemical modification creates chemically modi...
The strategy of combined site directed mutagenesis and chemical modification creates chemically modi...
Random mutagenesis has been used to engineer the protease subtilisin E to function in a highly nonna...
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...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...
Single amino acid substitutions increase the activity and stability of subtilisin E in mixtures of o...
Q103R subtilisin E was isolated following random mutagenesis and screening for improved activity in ...
Q103R subtilisin E was isolated following random mutagenesis and screening for improved activity in ...
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...
Many industrial processes used to produce chemicals and pharmaceuticals would benefit from enzymes t...
A significant enhancement of the applicability of the serine protease subtilisin Bacillus lentus (SB...
Many industrial processes used to produce chemicals and pharmaceuticals would benefit from enzymes t...
A significant enhancement of the applicability of the serine protease subtilisin Bacillus lentus (SB...
The strategy of combined site directed mutagenesis and chemical modification creates chemically modi...
The strategy of combined site directed mutagenesis and chemical modification creates chemically modi...