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Systems Biology: Simulation of Dynamic Network States

Systems Biology: Simulation of Dynamic Network States

Systems Biology: Simulation of Dynamic Network States

Bernhard Ø. Palsson, University of California, San Diego
June 2011
Available
Hardback
9781107001596
$92.99
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Hardback
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eBook

    Biophysical models have been used in biology for decades, but they have been limited in scope and size. In this book, Bernhard Ø. Palsson shows how network reconstructions that are based on genomic and bibliomic data, and take the form of established stoichiometric matrices, can be converted into dynamic models using metabolomic and fluxomic data. The Mass Action Stoichiometric Simulation (MASS) procedure can be used for any cellular process for which data is available and allows a scalable step-by-step approach to the practical construction of network models. Specifically, it can treat integrated processes that need explicit accounting of small molecules and protein, which allows simulation at the molecular level. The material has been class-tested by the author at both the undergraduate and graduate level. All computations in the text are available online in MATLAB® and Mathematica® workbooks, allowing hands-on practice with the material.

    • Shows how dynamic models are built and simulated in the modern omics era
    • Provides a unified framework that allows the treatment of metabolites, enzymes and binding protein simultaneously
    • Material for instructors and students is available from http://systemsbiology.ucsd.edu

    Product details

    June 2011
    Hardback
    9781107001596
    332 pages
    254 × 182 × 25 mm
    0.8kg
    126 b/w illus.
    Available

    Table of Contents

    • Preface
    • 1. Introduction
    • 2. Basic concepts
    • Part I. Simulation of Dynamic States:
    • 3. Dynamic simulation: the basic procedure
    • 4. Chemical reactions
    • 5. Enzyme kinetics
    • 6. Open systems
    • Part II. Biological Characteristics:
    • 7. Orders of magnitude
    • 8. Stoichiometric structure
    • 9. Regulation as elementary phenomena
    • Part III. Metabolism:
    • 10. Glycolysis
    • 11. Coupling pathways
    • 12. Building networks
    • Part IV. Macromolecules:
    • 13. Hemoglobin
    • 14. Regulated enzymes
    • 15. Epilogue
    • A. Nomenclature
    • B. Homework problems
    • References
    • Index.
    Resources for
    Type
    Chapter 06: Open Systems
    Chapter 01: Introduction
    Section 08.3.1 v2
    Section 04.4 v2
    Section 12 Glycolysis PPP AMP Salvage Simulator
    Example 03.4 Sim
    Section 12 Glycolysis PPP AMP Salvage Simulator
    Chapter 05: Enzyme Kinetics
    Mathematica Notebooks
    Section 06.3 v2
    Section 04.3 v2
    Section 11 Glycolysis PPP Simulator
      Author
    • Bernhard Ø. Palsson , University of California, San Diego

      Bernhard Ø. Palsson is the Galletti Professor of Bioengineering and Adjunct Professor of Medicine at the University of California, San Diego.