In this paper the nature and validity of the mathematical formulation of Michaelis–Menten-type kinetics for enzyme-catalysed biochemical reactions is studied. Previous work has in the main concentrated on isolated, spatially uniform (well-mixed) reactions. The effects of substrate input and diffusion on this formulation, in particular, on the nature and validity of the quasi-steady-state-assumption for diffusion-driven fronts are investigated. It is shown that, provided the Michaelis–Menten constant K M is sufficiently large, an appropriate quasi-steady-state assumption is valid at all points in space and for all times other than in a region that closely tracks the front itself. Moreover, it is shown that this region shrinks with time
The principal aim of studies of enzyme-mediated reactions has been to provide comparative and quanti...
The principal aim of studies of enzyme-mediated reactions has been to provide comparative and quanti...
Abstract-Analytic approximations of the time-evolution of the single enzyme-substrate reaction are v...
In this paper the nature and validity of the mathematical formulation of Michaelis–Menten-type kinet...
The Michaelis-Menten equation for the kinetics of a simple enzyme-catalyzed reaction is based on the...
The nature and validity of the mathematical formulation of Michaelis-Menten type kinetics for enzyme...
The nature and validity of the mathematical formulation of Michaelis-Menten type kinetics for enzyme...
We consider a recent extension to the validity of the quasi-steady-state assumption (QSSA) which inc...
We consider a recent extension to the validity of the quasi-steady-state assumption (QSSA) which inc...
Analytic approximations of the time-evolution of the single enzyme-substrate reaction are valid for ...
Analytic approximations of the time-evolution of the single enzyme-substrate reaction are valid for ...
We re-visit previous analyses of the classical Michaelis-Menten substrate-enzyme reaction and, with ...
We re-visit previous analyses of the classical Michaelis-Menten substrate-enzyme reaction and, with ...
textabstractThe Michaelis-Menten-Henri (MMH) mechanism is one of the paradigm reaction mechanisms in...
Abstract: The Michaelis-Menten-Henri (MMH) mechanism is one of the paradigm reaction mechanisms in b...
The principal aim of studies of enzyme-mediated reactions has been to provide comparative and quanti...
The principal aim of studies of enzyme-mediated reactions has been to provide comparative and quanti...
Abstract-Analytic approximations of the time-evolution of the single enzyme-substrate reaction are v...
In this paper the nature and validity of the mathematical formulation of Michaelis–Menten-type kinet...
The Michaelis-Menten equation for the kinetics of a simple enzyme-catalyzed reaction is based on the...
The nature and validity of the mathematical formulation of Michaelis-Menten type kinetics for enzyme...
The nature and validity of the mathematical formulation of Michaelis-Menten type kinetics for enzyme...
We consider a recent extension to the validity of the quasi-steady-state assumption (QSSA) which inc...
We consider a recent extension to the validity of the quasi-steady-state assumption (QSSA) which inc...
Analytic approximations of the time-evolution of the single enzyme-substrate reaction are valid for ...
Analytic approximations of the time-evolution of the single enzyme-substrate reaction are valid for ...
We re-visit previous analyses of the classical Michaelis-Menten substrate-enzyme reaction and, with ...
We re-visit previous analyses of the classical Michaelis-Menten substrate-enzyme reaction and, with ...
textabstractThe Michaelis-Menten-Henri (MMH) mechanism is one of the paradigm reaction mechanisms in...
Abstract: The Michaelis-Menten-Henri (MMH) mechanism is one of the paradigm reaction mechanisms in b...
The principal aim of studies of enzyme-mediated reactions has been to provide comparative and quanti...
The principal aim of studies of enzyme-mediated reactions has been to provide comparative and quanti...
Abstract-Analytic approximations of the time-evolution of the single enzyme-substrate reaction are v...