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Mathematical Modelling of the Cell Cycle Stress Response

English · Hardback

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Description

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The cell cycle is a sequence of biochemical events that are controlled by complex but robust molecular machinery. This enables cells to achieve accurate self-reproduction under a broad range of conditions. Environmental changes are transmitted by molecular signaling networks, which coordinate their actions with the cell cycle.

This work presents the first description of two complementary computational models describing the influence of osmotic stress on the entire cell cycle of S. cerevisiae. Our models condense a vast amount of experimental evidence on the interaction of the cell cycle network components with the osmotic stress pathway. Importantly, it is only by considering the entire cell cycle that we are able to make a series of novel predictions which emerge from the coupling between the molecular components of different cell cycle phases.

The model-based predictions are supported by experiments in S. cerevisiae and, moreover, have recently been observed in other eukaryotes. Furthermore our models reveal the mechanisms that emerge as a result of the interaction between the cell cycle and stress response networks.

List of contents

A biological overview of the cell cycle and its response to osmotic stress and the -factor.- ODE model of the cell cycle response to osmotic stress.- Boolean model of the cell cycle response to stress.- Conclusion.- List of equations, parameters and initial conditions.- Effect of methods of update on existence of fixed points.

Summary

The cell cycle is a sequence of biochemical events that are controlled by complex but robust molecular machinery. This enables cells to achieve accurate self-reproduction under a broad range of conditions. Environmental changes are transmitted by molecular signaling networks, which coordinate their actions with the cell cycle.
 
This work presents the first description of two complementary computational models describing the influence of osmotic stress on the entire cell cycle of S. cerevisiae. Our models condense a vast amount of experimental evidence on the interaction of the cell cycle network components with the osmotic stress pathway. Importantly, it is only by considering the entire cell cycle that we are able to make a series of novel predictions which emerge from the coupling between the molecular components of different cell cycle phases.
 
The model-based predictions are supported by experiments in S. cerevisiae and, moreover, have recently been observed in other eukaryotes. Furthermore our models reveal the mechanisms that emerge as a result of the interaction between the cell cycle and stress response networks.

Product details

Authors Elahe Radmaneshfar
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 25.04.2013
 
EAN 9783319007434
ISBN 978-3-31-900743-4
No. of pages 109
Dimensions 162 mm x 242 mm x 14 mm
Weight 309 g
Illustrations XV, 109 p. 36 illus., 29 illus. in color.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Biology > Biochemistry, biophysics

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