Fr. 134.00

Mathematical Modelling of Chromosome Replication and Replicative Stress

English · Hardback

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Description

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DNA replication is arguably the most crucial process at work in living cells. It is the mechanism by which organisms pass their genetic information from one generation to the next and life on Earth would be unthinkable without it. Despite the discovery of DNA structure in the 1950s, the mechanism of its replication remains rather elusive.
This work makes important contributions to this line of research. In particular, it addresses two key questions in the area of DNA replication: which evolutionary forces drive the positioning of replication origins in the chromosome and how is the spatial organization of replication factories achieved inside the nucleus of a cell?.
A cross-disciplinary approach uniting physics and biology is at the heart of this research. Along with experimental support, statistical physics theory produces optimal origin positions and provides a model for replication fork assembly in yeast. Advances made here can potentially further our understanding of disease mechanisms such as the abnormal replication in cancer.

List of contents

Introduction.- Optimal Origin Placement for Minimal Replication Time.- Actively Replicating Domains Randomly Associate into Replication Factories.- Summary and Conclusions.

Summary

DNA replication is arguably the most crucial process at work in living cells. It is the mechanism by which organisms pass their genetic information from one generation to the next and life on Earth would be unthinkable without it. Despite the discovery of DNA structure in the 1950s, the mechanism of its replication remains rather elusive.
This work makes important contributions to this line of research. In particular, it addresses two key questions in the area of DNA replication: which evolutionary forces drive the positioning of replication origins in the chromosome and how is the spatial organization of replication factories achieved inside the nucleus of a cell?.
A cross-disciplinary approach uniting physics and biology is at the heart of this research. Along with experimental support, statistical physics theory produces optimal origin positions and provides a model for replication fork assembly in yeast. Advances made here can potentially further our understanding of disease mechanisms such as the abnormal replication in cancer.

Product details

Authors Jens Karschau
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 16.06.2014
 
EAN 9783319088600
ISBN 978-3-31-908860-0
No. of pages 76
Dimensions 165 mm x 240 mm x 9 mm
Weight 262 g
Illustrations XIII, 76 p. 57 illus., 9 illus. in color.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Biology > Biochemistry, biophysics

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