A dynamic model has been developed to quantitate the dynamics of growth of Escherichia coli. The model integrates the preexisting models of chromosome replication and cell division by incorporating a description of the synthesis and degradation of ribosomes and protein. Relevant features of the model are: a threshold control for DNA synthesis and a double feedback mechanism that controls ribosome synthesis. The model generates accurate predictions of the kinetics of growth and cell composition of Escherichia coli B/r cells, each growth condition being defined by a set of parameters
Due to the complexity of biological systems, simulation of biological networks is necessary but some...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter, we ...
We examine five quantitative models of the cell-cycle and cell-size control in Escherichia coli and ...
A three-pool growth model of an individual Escherichia coli cell is described herein. The model is b...
Ribosomes-the primary macromolecular machines responsible for translating the genetic code into prot...
A three-pool growth model of an individual Escherichia coli cell is described herein. The model is...
Includes bibliographical references (pages 40-45).Escherichia coli growth is strongly regulated by e...
International audienceThe coordination of cell growth and division is a long-standing problem in bio...
A model of bacterial population maintained in a steady state of sustained exponential growth is deve...
Reliable dynamic descriptions of cellular growth are important for many practical applications inclu...
The defining feature of living organisms is their capacity to reproduce and pass on the genetic infor...
We propose a biophysical model of Escherichia coli that predicts growth rate and an effective cellul...
AbstractCentral to all life is the assembly of the ribosome: a coordinated process involving the hie...
One important aim of synthetic biology is to develop a self-replicating biological system capable of...
Bacteria that are subjected to ribosome-inhibiting antibiotic drugs show an interesting behavior: Al...
Due to the complexity of biological systems, simulation of biological networks is necessary but some...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter, we ...
We examine five quantitative models of the cell-cycle and cell-size control in Escherichia coli and ...
A three-pool growth model of an individual Escherichia coli cell is described herein. The model is b...
Ribosomes-the primary macromolecular machines responsible for translating the genetic code into prot...
A three-pool growth model of an individual Escherichia coli cell is described herein. The model is...
Includes bibliographical references (pages 40-45).Escherichia coli growth is strongly regulated by e...
International audienceThe coordination of cell growth and division is a long-standing problem in bio...
A model of bacterial population maintained in a steady state of sustained exponential growth is deve...
Reliable dynamic descriptions of cellular growth are important for many practical applications inclu...
The defining feature of living organisms is their capacity to reproduce and pass on the genetic infor...
We propose a biophysical model of Escherichia coli that predicts growth rate and an effective cellul...
AbstractCentral to all life is the assembly of the ribosome: a coordinated process involving the hie...
One important aim of synthetic biology is to develop a self-replicating biological system capable of...
Bacteria that are subjected to ribosome-inhibiting antibiotic drugs show an interesting behavior: Al...
Due to the complexity of biological systems, simulation of biological networks is necessary but some...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter, we ...
We examine five quantitative models of the cell-cycle and cell-size control in Escherichia coli and ...