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Enzyme Kinetics: Principles and Methods / Edition 2
     

Enzyme Kinetics: Principles and Methods / Edition 2

by Hans Bisswanger
 

ISBN-10: 3527319573

ISBN-13: 9783527319572

Pub. Date: 05/27/2008

Publisher: Wiley

This new, expanded and updated edition of the user-friendly and comprehensive treatise on enzyme kinetics expertly balances theory and practice. With its easy-to-use program on CD-ROM containing examples allowing for the interpretation of experimental data, this is an indispensable aid for advanced students and professionals working with enzymes, whether biochemists,

Overview

This new, expanded and updated edition of the user-friendly and comprehensive treatise on enzyme kinetics expertly balances theory and practice. With its easy-to-use program on CD-ROM containing examples allowing for the interpretation of experimental data, this is an indispensable aid for advanced students and professionals working with enzymes, whether biochemists, biotechnologists, chemical biologists, pharmacologists or bioengineers in academia, industry and clinical research.

Product Details

ISBN-13:
9783527319572
Publisher:
Wiley
Publication date:
05/27/2008
Edition description:
Second, Revised and Updated Edition
Pages:
320
Product dimensions:
7.00(w) x 9.80(h) x 0.98(d)

Table of Contents

Preface to the Second English Edition.

Preface to the First English Edition.

Symbols and Abbreviations.

Introduction and Definitions.

References.

1 Multiple Equilibria.

1.1 Diffusion.

1.2 Interaction between Macromolecules and Ligands.

1.3 Macromolecules with Identical Independent Binding Sites.

1.4 Macromolecules with Non-identical, Independent Binding Sites.

1.5 Macromolecules with Identical, Interacting Binding Sites, Cooperativity.

1.6 Non-identical, Interacting Binding Sites.

References.

2 Enzyme Kinetics.

2.1 Reaction Order.

2.2 Steady-State Kinetics and the Michaelis-Menten Equation.

2.3 Analysis of Enzyme Kinetic Data.

2.4 Reversible Enzyme Reactions.

2.5 Enzyme Inhibition.

2.6 Multi-substrate Reactions.

2.7 Derivation of Rate Equations of Complex Enzyme Mechanisms.

2.8 Kinetic Treatment of Allosteric Enzymes.

2.9 pH and Temperature Dependence of Enzymes.

2.10 Isotope Exchange.

2.11 Special Enzyme Mechanisms.

2.12 Application of Statistical Methods in Enzyme Kinetics.

References.

3 Methods.

3.1 Methods for Investigation of Multiple Equilibria.

3.2 Electrochemical Methods.

3.3 Calorimetry.

3.4 Spectroscopic Methods.

3.5 Measurement of Fast Reactions.

References.

Subject Index.

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