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Networks in cell biology / edited by M. Buchanan [and others].

Contributor(s): Material type: TextTextPublisher: Cambridge : Cambridge University Press, 2010Description: 1 online resource (x, 271 pages) : digital, PDF file(s)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780511845086 (ebook)
Subject(s): Additional physical formats: Print version: : No titleDDC classification:
  • 571.6 22
LOC classification:
  • QH604 .M63 2010
Online resources:
Contents:
Introduction; 1. Network views of the cell / Paolo De Los Rios and Michele Vendruscolo. 2. Transcriptional regulatory networks / Sarath Chandra Janga and M. Madan Babu. 3. Transcription factors and gene regulatory networks / Matteo Brilli, Elissa Calistri and Pietro Lió. 4. Experimental methods for protein interaction identification / Peter Uetz, Björn Titz, Seesandra V. Rajagopala and Gerard Cagney. 5. Modeling protein interaction networks / Francesco Rao. 6. Dynamics and evolution of metabolic networks / Daniel Segre. 7. Hierarchical modularity in biological networks: the case of metabolic networks / Erzsebet Ravasz Regan; 8. Signalling networks / Gian Paolo Rossini. Appendix 1. Complex networks: from local to global properties / D. Garlaschelli and G. Caldarelli; Appendix 2. Modelling the local structure of networks / D. Garlaschelli and G. Caldarelli; Appendix 3. Higher-order topological properties / S. Ahnert, T. Fink and G. Caldarelli. Appendix 4. Elementary mathematical concepts / A. Gabrielli and G. Caldarelli.
Summary: The science of complex biological networks is transforming research in areas ranging from evolutionary biology to medicine. This is the first book on the subject, providing a comprehensive introduction to complex network science and its biological applications. With contributions from key leaders in both network theory and modern cell biology, this book discusses the network science that is increasingly foundational for systems biology and the quantitative understanding of living systems. It surveys studies in the quantitative structure and dynamics of genetic regulatory networks, molecular networks underlying cellular metabolism, and other fundamental biological processes. The book balances empirical studies and theory to give a unified overview of this interdisciplinary science. It is a key introductory text for graduate students and researchers in physics, biology and biochemistry, and presents ideas and techniques from fields outside the reader's own area of specialization.
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Title from publisher's bibliographic system (viewed on 05 Oct 2015).

Introduction; 1. Network views of the cell / Paolo De Los Rios and Michele Vendruscolo. 2. Transcriptional regulatory networks / Sarath Chandra Janga and M. Madan Babu. 3. Transcription factors and gene regulatory networks / Matteo Brilli, Elissa Calistri and Pietro Lió. 4. Experimental methods for protein interaction identification / Peter Uetz, Björn Titz, Seesandra V. Rajagopala and Gerard Cagney. 5. Modeling protein interaction networks / Francesco Rao. 6. Dynamics and evolution of metabolic networks / Daniel Segre. 7. Hierarchical modularity in biological networks: the case of metabolic networks / Erzsebet Ravasz Regan; 8. Signalling networks / Gian Paolo Rossini. Appendix 1. Complex networks: from local to global properties / D. Garlaschelli and G. Caldarelli; Appendix 2. Modelling the local structure of networks / D. Garlaschelli and G. Caldarelli; Appendix 3. Higher-order topological properties / S. Ahnert, T. Fink and G. Caldarelli. Appendix 4. Elementary mathematical concepts / A. Gabrielli and G. Caldarelli.

The science of complex biological networks is transforming research in areas ranging from evolutionary biology to medicine. This is the first book on the subject, providing a comprehensive introduction to complex network science and its biological applications. With contributions from key leaders in both network theory and modern cell biology, this book discusses the network science that is increasingly foundational for systems biology and the quantitative understanding of living systems. It surveys studies in the quantitative structure and dynamics of genetic regulatory networks, molecular networks underlying cellular metabolism, and other fundamental biological processes. The book balances empirical studies and theory to give a unified overview of this interdisciplinary science. It is a key introductory text for graduate students and researchers in physics, biology and biochemistry, and presents ideas and techniques from fields outside the reader's own area of specialization.

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