The Henry-Michaelis-Menten (HMM) mechanism of enzymatic reaction is studied by means of perturbation theory in the reaction rate constant k2 of product formation. We present analytical solutions that provide the concentrations of the enzyme (E), the substrate (S), as well as those of the enzyme-substrate complex (C), and the product (P) as functions of time. For k2 small compared to k-1, we properly describe the entire enzymatic activity from the beginning of the reaction up to longer times without imposing extra conditions on the initial concentrations Eo and So, which can be comparable or much different. \ua9 2012 Society for Mathematical Biology
Abstract-The mass action kinetic model of the irreversible Michael&Menten reaction mechanism is ...
Accurate measurement of the quantitative aspects of enzyme-catalysed reactions is critical for a dee...
The enzymatic processes according Michaelis-Menten kinetics have been studied from various approache...
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...
<p><i>S</i>, <i>E</i>, <i>C</i> and <i>P</i> denote the concentrations of the Substrate, Enzyme, sub...
Enzymes are dynamic entities: both their conformation and catalytic activity fluctuate over time. Wh...
The use of the classic Henry-Michaelis-Menten (HMM) model (or simply, Michaelis-Menten model) to stu...
A systematic perturbative procedure (the method of singular perturbation) is developed to follow the...
A simple thermodynamic analysis of the well-known Michaelis-Menten equation (MME) of enzyme catalysi...
Michaelis-Menten analysis of the rates of enzymatic reactions as a function of substrate concentrati...
The mechanism of the enzyme reactions is expressed usually as follows. (ER : Michaelis complex) Mich...
The mass action kinetic model of the irreversible Michaelis-Menten reaction mechanism is mathematica...
In this paper, we consider the validity of Michaelis-Menten (MM) approximation of two complex enzyme...
This paper summarizes our present theoretical understanding of single-molecule kinetics associated w...
Abstract-The mass action kinetic model of the irreversible Michael&Menten reaction mechanism is ...
Accurate measurement of the quantitative aspects of enzyme-catalysed reactions is critical for a dee...
The enzymatic processes according Michaelis-Menten kinetics have been studied from various approache...
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...
<p><i>S</i>, <i>E</i>, <i>C</i> and <i>P</i> denote the concentrations of the Substrate, Enzyme, sub...
Enzymes are dynamic entities: both their conformation and catalytic activity fluctuate over time. Wh...
The use of the classic Henry-Michaelis-Menten (HMM) model (or simply, Michaelis-Menten model) to stu...
A systematic perturbative procedure (the method of singular perturbation) is developed to follow the...
A simple thermodynamic analysis of the well-known Michaelis-Menten equation (MME) of enzyme catalysi...
Michaelis-Menten analysis of the rates of enzymatic reactions as a function of substrate concentrati...
The mechanism of the enzyme reactions is expressed usually as follows. (ER : Michaelis complex) Mich...
The mass action kinetic model of the irreversible Michaelis-Menten reaction mechanism is mathematica...
In this paper, we consider the validity of Michaelis-Menten (MM) approximation of two complex enzyme...
This paper summarizes our present theoretical understanding of single-molecule kinetics associated w...
Abstract-The mass action kinetic model of the irreversible Michael&Menten reaction mechanism is ...
Accurate measurement of the quantitative aspects of enzyme-catalysed reactions is critical for a dee...
The enzymatic processes according Michaelis-Menten kinetics have been studied from various approache...