Studies on the mechanism of crown-ether-induced activation are described in this paper. Michaelis Menten kinetics of α-chymotrypsin in toluene in the presence and absence of 18-crown-6 showed that only Vmax is increased upon crown ether treatment. Parallel Lineweaver–Burk plots indicate that crown ethers do not activate the enzyme by specific interactions in the active site, such as transition state stabilization or facilitated transport of water molecules. Increased Vmax values of crown-ether-treated enzyme most probably originate from conformational changes, which alter kcat as well as the amount of catalytically active enzyme
Addition of crown ethers to α-chymotrypsin, subtilisin, and other proteases considerably enhances th...
Pretreatment of serine proteases by lyophilisation in the presence of crown ethers leads to large en...
Pretreatment of serine proteases by lyophilisation in the presence of crown ethers leads to large en...
One of the major drawbacks of enzymes in nonaqueous solvents is that their activity is often dramati...
One of the major drawbacks of enzymes in nonaqueous solvents is that their activity is often dramati...
Currently, the applicability of enzymes in synthetic organic chemistry is well recognized. The field...
Currently, the applicability of enzymes in synthetic organic chemistry is well recognized. The field...
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...
Crown ethers considerably enhance the rate of the α-chymotrypsin- catalysed transesterification of N...
The activity of cross-linked subtilisin Carlsberg crystals in the catalysis of peptide bond formatio...
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...
Pretreatment of serine proteases by lyophilisation in the presence of crown ethers leads to large en...
Pretreatment of serine proteases by lyophilisation in the presence of crown ethers leads to large en...
One of the major drawbacks of enzymes in nonaqueous solvents is that their activity is often dramati...
One of the major drawbacks of enzymes in nonaqueous solvents is that their activity is often dramati...
Currently, the applicability of enzymes in synthetic organic chemistry is well recognized. The field...
Currently, the applicability of enzymes in synthetic organic chemistry is well recognized. The field...
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...
Crown ethers considerably enhance the rate of the α-chymotrypsin- catalysed transesterification of N...
The activity of cross-linked subtilisin Carlsberg crystals in the catalysis of peptide bond formatio...
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...
Pretreatment of serine proteases by lyophilisation in the presence of crown ethers leads to large en...
Pretreatment of serine proteases by lyophilisation in the presence of crown ethers leads to large en...