The rate of enzyme-catalyzed reactions is a proportional function of the reaction affinity over a range of more than 2 kcal/mol, (i.e., 25-fold substrate concentration change). For kinetically irreversible reactions, proportionality is obeyed when the substrate concentration is of the same order of magnitude as the Km of the reaction. Linearity can be obtained by proper choice of product concentration or alternatively by a linear transformation which allows the description of the system by slightly different parameters. For kinetically reversible reactions, the linear range could be obtained and extended to both sides of equilibrium provided the concentration of the substrate is fixed at a proper value and the affinity is varied by the prod...
AbstractIn a Michaelis-Menten type reversible enzyme reaction (one substrate, one product) the rapid...
AbstractMichaelis and Menten’s mechanism for enzymatic catalysis is remarkable both in its simplicit...
Kinetics of biocatalytical synergistic reactions has been analyzed at non-stationary state (NSS) and...
The rate of enzyme-catalyzed reactions is a proportional function of the reaction affinity over a ra...
The linear phenomenological equations of nonequilibrium thermodynamics are limited theoretically to ...
The linear phenomenological equations of nonequilibrium thermodynamics are limited theoretically to ...
For a complex catalytic reaction with a single-route linear mechanism, a new, kinetico-thermodynamic...
An existing model for the rate coefficients of enzyme-catalyzed processes involves the regularized g...
Accurate measurement of the quantitative aspects of enzyme-catalysed reactions is critical for a dee...
<div><p>In metabolism research, thermodynamics is usually used to determine the directionality of a ...
A new criterion is applied for characterization of the kinetic design of enzymes that should be favo...
It is widely recognized and accepted that although biocatalysis is an exquisite tool to synthesize n...
Classification of enzymes according to the reaction(s) catalysed is a relatively straightforward pro...
To explain the kinetics of enzyme-substrate reactions, Michaelis and Menten (1913) came up with a me...
The application of the quasi-steady-state approximation (QSSA) in biochemical kinetics allows the re...
AbstractIn a Michaelis-Menten type reversible enzyme reaction (one substrate, one product) the rapid...
AbstractMichaelis and Menten’s mechanism for enzymatic catalysis is remarkable both in its simplicit...
Kinetics of biocatalytical synergistic reactions has been analyzed at non-stationary state (NSS) and...
The rate of enzyme-catalyzed reactions is a proportional function of the reaction affinity over a ra...
The linear phenomenological equations of nonequilibrium thermodynamics are limited theoretically to ...
The linear phenomenological equations of nonequilibrium thermodynamics are limited theoretically to ...
For a complex catalytic reaction with a single-route linear mechanism, a new, kinetico-thermodynamic...
An existing model for the rate coefficients of enzyme-catalyzed processes involves the regularized g...
Accurate measurement of the quantitative aspects of enzyme-catalysed reactions is critical for a dee...
<div><p>In metabolism research, thermodynamics is usually used to determine the directionality of a ...
A new criterion is applied for characterization of the kinetic design of enzymes that should be favo...
It is widely recognized and accepted that although biocatalysis is an exquisite tool to synthesize n...
Classification of enzymes according to the reaction(s) catalysed is a relatively straightforward pro...
To explain the kinetics of enzyme-substrate reactions, Michaelis and Menten (1913) came up with a me...
The application of the quasi-steady-state approximation (QSSA) in biochemical kinetics allows the re...
AbstractIn a Michaelis-Menten type reversible enzyme reaction (one substrate, one product) the rapid...
AbstractMichaelis and Menten’s mechanism for enzymatic catalysis is remarkable both in its simplicit...
Kinetics of biocatalytical synergistic reactions has been analyzed at non-stationary state (NSS) and...