The activity and enantioselectivity of -chymotrypsin and subtilisin Carlsberg in the transesterification of a series of N-acetyl-alanine and -phenylalanine esters in cyclohexane were investigated at constant water activity, both in the absence and presence of 18-crown-6. Isosteric variation of the leaving ability of the alcoholate group in the substrates by fluoro substitution provided information about the acylation step of the reaction. For less reactive esters, the rate of acylation is determined by expulsion of the leaving group, whereas for activated esters the rate is dictated by a physical step, most likely a relatively slow conformational change of the enzyme. This makes the enantioselectivity of the enzymes strongly dependent of th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
A rationale is presented as to why the enantioselectivity of enzymes in dry organic media towards sp...
A rationale is presented as to why the enantioselectivity of enzymes in dry organic media towards sp...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotryspin, subtilisin, and otl1er proteases considerably enhances t...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
A rationale is presented as to why the enantioselectivity of enzymes in dry organic media towards sp...
A rationale is presented as to why the enantioselectivity of enzymes in dry organic media towards sp...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotryspin, subtilisin, and otl1er proteases considerably enhances t...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
A rationale is presented as to why the enantioselectivity of enzymes in dry organic media towards sp...
A rationale is presented as to why the enantioselectivity of enzymes in dry organic media towards sp...