A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled anthraniloyl-α-chymotrypsin, dansylsubtilisin Carlsberg, and native subtilisin Carlsberg, suspended in organic solvents, is described. The internal rotational mobility of the fluorophore in the nanosecond time range could be separated from rotation of enzyme aggregates and rapid energy transfer processes. The enzymes suspended in dry organic solvents are less flexible than when dissolved in water. The enzyme flexibility increased with increasing hydration level. The results confirm that the increase in enzyme activity observed upon addition of low amounts of extra water is related to an increase in enzyme flexibility. Differences in enantiosele...
Enzymes have been extensively used in organic solvents to catalyze a variety of transformations of b...
Abstract Background Enzymes have been extensively used in organic solvents to catalyze a variety of ...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
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...
Enzymes have been extensively used in organic solvents to catalyze a variety of transformations of b...
Enzymes have been extensively used in organic solvents to catalyze a variety of transformations of b...
Abstract Background Enzymes have been extensively used in organic solvents to catalyze a variety of ...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
A time-resolved fluorescence anisotropy study on the molecular flexibility of active-site labeled an...
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...
Enzymes have been extensively used in organic solvents to catalyze a variety of transformations of b...
Enzymes have been extensively used in organic solvents to catalyze a variety of transformations of b...
Abstract Background Enzymes have been extensively used in organic solvents to catalyze a variety of ...
The activity and enantioselectivity of α-chymotrypsin and subtilisin Carlsberg in the transesterific...