From expressions derived for the space-filling effects of small inert solutes on kinetic parameters for univalent enzymes undergoing isomerizations that are substrate-induced and pre-existing, it is concluded that experimental observation of an enhanced maximal velocity in the presence of inert solute can only reflect the existence of the former type of conformational change; and that the isomerization must be governed by a relatively small equilibrium constant. Similar conclusions apply to multivalent enzymes exhibiting Michaelis-Menten kinetics. Extension of the theory to provide quantitative expressions for multivalent enzymes has made possible the numerical simulation of thermodynamic non-ideality effects on systems conforming with the ...
Many in vivo enzymatic processes, such as those of the tissue factor pathway of blood coagulation, o...
The Michaelis-Menten equation for the kinetics of a simple enzyme-catalyzed reaction is based on the...
Enzymes are powerful biocatalysts that provide rate accelerations of up to 1019 fold compared to the...
Expressions for the effects of thermodynamic nonideality arising from the use of high concentrations...
Sedimentation velocity studies in the presence and absence of an inert space-filling solute, sucrose...
The effects of a small inert solute, sucrose, on the kinetics of hydrolysis of N-acetyl-tryptophan e...
A combination of enzyme kinetic studies and active enzyme gel chromatography on Sepharose CL-6B was ...
The discovery at the end of the 1950s and the beginning of the 1960s that there were enzymes like th...
Pure Michaelis-Menten enzymes have been studied (i.e., enzymes with a hyperbolic (S, V) behavior in ...
Enzyme is a dynamic entity with diverse time scales, ranging from picoseconds to seconds or even l...
Current enzyme kinetic equations are inadequate for modelling enzymatic reactor systems because they...
The enhanced catalytic reduction of pyruvate by rabbit muscle lactate dehydrogenase that results fro...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
The study of enzyme reaction mechanisms is fundamentally important to our understanding of biochemis...
1045-1051The kinetics of immobilized enzymes can not be analyzed by means of the simple Michaelis-M...
Many in vivo enzymatic processes, such as those of the tissue factor pathway of blood coagulation, o...
The Michaelis-Menten equation for the kinetics of a simple enzyme-catalyzed reaction is based on the...
Enzymes are powerful biocatalysts that provide rate accelerations of up to 1019 fold compared to the...
Expressions for the effects of thermodynamic nonideality arising from the use of high concentrations...
Sedimentation velocity studies in the presence and absence of an inert space-filling solute, sucrose...
The effects of a small inert solute, sucrose, on the kinetics of hydrolysis of N-acetyl-tryptophan e...
A combination of enzyme kinetic studies and active enzyme gel chromatography on Sepharose CL-6B was ...
The discovery at the end of the 1950s and the beginning of the 1960s that there were enzymes like th...
Pure Michaelis-Menten enzymes have been studied (i.e., enzymes with a hyperbolic (S, V) behavior in ...
Enzyme is a dynamic entity with diverse time scales, ranging from picoseconds to seconds or even l...
Current enzyme kinetic equations are inadequate for modelling enzymatic reactor systems because they...
The enhanced catalytic reduction of pyruvate by rabbit muscle lactate dehydrogenase that results fro...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
The study of enzyme reaction mechanisms is fundamentally important to our understanding of biochemis...
1045-1051The kinetics of immobilized enzymes can not be analyzed by means of the simple Michaelis-M...
Many in vivo enzymatic processes, such as those of the tissue factor pathway of blood coagulation, o...
The Michaelis-Menten equation for the kinetics of a simple enzyme-catalyzed reaction is based on the...
Enzymes are powerful biocatalysts that provide rate accelerations of up to 1019 fold compared to the...