This article proposes a modification of the model developed by Sinha (1988) and Sen and Liu (1990) for the regulation dynamics of the tryptophan operon in E. coli based on a consistent overall balance of the agent repressing the mRNA transcription. The dynamics of the model are analyzed by means of continuation techniques and the influence of periodic fluctuations in the intracellular demand for tryptophan is addressed. The analysis provides deeper insight into the dynamics of this operon system and the results obtained may be a useful starting point for the optimization of tryptophan yield in bacterial cultures. (C) 2002 Wiley Periodicals, Inc
Abstract: A genetically structured mathematical model of the trp attenuator in Escherichia coli base...
Genetic regulatory control mechanisms are necessary for the normal proliferation and survival of cel...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...
A mathematical model has been developed to study the effect of external tryptophan on the trp operon...
Oscillatory behaviour in the tryptophan operon of an Escherichia coli mutant strain lacking the enzy...
Biological systems respond appropriately to a variety of environments thus representing complex syst...
We are now aware that RNA-based regulatory mechanisms are commonly used to control gene expression i...
The repressor-mediated repression process in bacteria is modelled using a gene-enzyme-endproduct con...
Oscillatory behaviour in the tryptophan operon of an Escherichia coli mutant strain lacking the enzy...
The tryptophan system present in Escherichia coli represents an important regulatory unit described ...
Physiological studies were performed under nutritional stress and nonstress conditions to assess the...
A model for the tryptophan operon is formulated based on the genetic and biophysical data available ...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...
Tryptophan is one of the 20 amino acids that link together to form proteins. For humans it is an ess...
The presumably high potential of a holistic design approach for complex biochemical reaction network...
Abstract: A genetically structured mathematical model of the trp attenuator in Escherichia coli base...
Genetic regulatory control mechanisms are necessary for the normal proliferation and survival of cel...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...
A mathematical model has been developed to study the effect of external tryptophan on the trp operon...
Oscillatory behaviour in the tryptophan operon of an Escherichia coli mutant strain lacking the enzy...
Biological systems respond appropriately to a variety of environments thus representing complex syst...
We are now aware that RNA-based regulatory mechanisms are commonly used to control gene expression i...
The repressor-mediated repression process in bacteria is modelled using a gene-enzyme-endproduct con...
Oscillatory behaviour in the tryptophan operon of an Escherichia coli mutant strain lacking the enzy...
The tryptophan system present in Escherichia coli represents an important regulatory unit described ...
Physiological studies were performed under nutritional stress and nonstress conditions to assess the...
A model for the tryptophan operon is formulated based on the genetic and biophysical data available ...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...
Tryptophan is one of the 20 amino acids that link together to form proteins. For humans it is an ess...
The presumably high potential of a holistic design approach for complex biochemical reaction network...
Abstract: A genetically structured mathematical model of the trp attenuator in Escherichia coli base...
Genetic regulatory control mechanisms are necessary for the normal proliferation and survival of cel...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...