Interacting Macromolecules
The Theory and Practice of Their Electrophoresis, Ultracentrifugation, and Chromatography
John Cann(Author)
Academic Press
Published on 31. May 1970
Book
Hardback
262 pages
978-0-12-158550-1 (ISBN)
Description
Interacting Macromolecules: The Theory and Practice of Their Electrophoresis, Ultracentrifugation, and Chromatography reviews advances in theory and practice concerning the electrophoresis, ultracentrifugation, and chromatography of interacting macromolecules. The principles of mass transport of non-interacting systems are discussed, along with the weak electrolyte moving-boundary theory and analytical solution of approximate transport equations for certain types of interactions. Computer computations on ligand-mediated association-dissociation reactions are also presented. This book is comprised of six chapters and begins with a survey of the principles of electrophoresis and ultracentrifugation of non-reacting systems before proceeding with a detailed treatment of the mass transport of reversibly reacting macromolecules. A conservation equation is derived for a solution containing a single macromolecular ion. The following chapters explore the weak-electrolyte moving-boundary theory; the analytical Solution of approximate conservation equations; and numerical solution of exact conservation equations. The formulation of the numerical computation for ligand-mediated association-dissociation reactions is described, together with a code for sedimentation calculations. The final chapter summarizes the procedures and precautions required to assure accurate interpretation of sedimentation and electrophoretic patterns in terms of the thermodynamic and molecular parameters characterizing the reactions exhibited by biological macromolecules. The more common analytical applications of ultracentrifugation, electrophoresis, and chromatography are also outlined. This monograph is intended for molecular biologists and graduate students.
Interacting Macromolecules: The Theory and Practice of Their Electrophoresis, Ultracentrifugation, and Chromatography reviews advances in theory and practice concerning the electrophoresis, ultracentrifugation, and chromatography of interacting macromolecules. The principles of mass transport of non-interacting systems are discussed, along with the weak electrolyte moving-boundary theory and analytical solution of approximate transport equations for certain types of interactions. Computer computations on ligand-mediated association-dissociation reactions are also presented. This book is comprised of six chapters and begins with a survey of the principles of electrophoresis and ultracentrifugation of non-reacting systems before proceeding with a detailed treatment of the mass transport of reversibly reacting macromolecules. A conservation equation is derived for a solution containing a single macromolecular ion. The following chapters explore the weak-electrolyte moving-boundary theory; the analytical Solution of approximate conservation equations; and numerical solution of exact conservation equations. The formulation of the numerical computation for ligand-mediated association-dissociation reactions is described, together with a code for sedimentation calculations. The final chapter summarizes the procedures and precautions required to assure accurate interpretation of sedimentation and electrophoretic patterns in terms of the thermodynamic and molecular parameters characterizing the reactions exhibited by biological macromolecules. The more common analytical applications of ultracentrifugation, electrophoresis, and chromatography are also outlined. This monograph is intended for molecular biologists and graduate students.
Interacting Macromolecules: The Theory and Practice of Their Electrophoresis, Ultracentrifugation, and Chromatography reviews advances in theory and practice concerning the electrophoresis, ultracentrifugation, and chromatography of interacting macromolecules. The principles of mass transport of non-interacting systems are discussed, along with the weak electrolyte moving-boundary theory and analytical solution of approximate transport equations for certain types of interactions. Computer computations on ligand-mediated association-dissociation reactions are also presented. This book is comprised of six chapters and begins with a survey of the principles of electrophoresis and ultracentrifugation of non-reacting systems before proceeding with a detailed treatment of the mass transport of reversibly reacting macromolecules. A conservation equation is derived for a solution containing a single macromolecular ion. The following chapters explore the weak-electrolyte moving-boundary theory; the analytical Solution of approximate conservation equations; and numerical solution of exact conservation equations. The formulation of the numerical computation for ligand-mediated association-dissociation reactions is described, together with a code for sedimentation calculations. The final chapter summarizes the procedures and precautions required to assure accurate interpretation of sedimentation and electrophoretic patterns in terms of the thermodynamic and molecular parameters characterizing the reactions exhibited by biological macromolecules. The more common analytical applications of ultracentrifugation, electrophoresis, and chromatography are also outlined. This monograph is intended for molecular biologists and graduate students.
More details
Language
English
Place of publication
San Diego
United States
Publishing group
Elsevier Science Publishing Co Inc
Target group
Professional and scholarly
ISBN-13
978-0-12-158550-1 (9780121585501)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
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Additional editions

John Cann
Interacting Macromolecules
The Theory and Practice of Their Electrophoresis, Ultracentrifugation, and Chromatography
E-Book
12/2012
Academic Press
€54.95
Available for download
Content
Preface
Acknowledgments
I. Principles of Electrophoresis and Ultracentrifugation
Electrophoresis
Ultracentrifugation
Appendix I: Some Other Methods of Sedimentation Analysis
Appendix II: Total Chemical Potential
References
II. Weak-Electrolyte Moving-Boundary Theory
Macromolecular Isomerization
Weak-Electrolyte Moving Boundary
Interactions of Proteins with Small Ions
Interactions between Different Macromolecules
References
III. Analytical Solution of Approximate Conservation Equations
Analytical Solution of Approximate Conservation Equations
The Similarity Transformation
The Gilbert Theory
The Gilbert-Jenkins Theory
References
IV. Numerical Solution of Exact Conservation Equations
Factors Governing the Precise Shape of Reaction Boundaries
Zone Transport of Reacting Systems
Interaction of Macromolecules with Small Molecules
References
V. Numerical Methods
References
Appendix: A Computer Code for Sedimentation Calculations
VI. Practical Implications
Velocity Sedimentation
Electrophoresis
Chromatography
References
Author Index
Subject Index
Acknowledgments
I. Principles of Electrophoresis and Ultracentrifugation
Electrophoresis
Ultracentrifugation
Appendix I: Some Other Methods of Sedimentation Analysis
Appendix II: Total Chemical Potential
References
II. Weak-Electrolyte Moving-Boundary Theory
Macromolecular Isomerization
Weak-Electrolyte Moving Boundary
Interactions of Proteins with Small Ions
Interactions between Different Macromolecules
References
III. Analytical Solution of Approximate Conservation Equations
Analytical Solution of Approximate Conservation Equations
The Similarity Transformation
The Gilbert Theory
The Gilbert-Jenkins Theory
References
IV. Numerical Solution of Exact Conservation Equations
Factors Governing the Precise Shape of Reaction Boundaries
Zone Transport of Reacting Systems
Interaction of Macromolecules with Small Molecules
References
V. Numerical Methods
References
Appendix: A Computer Code for Sedimentation Calculations
VI. Practical Implications
Velocity Sedimentation
Electrophoresis
Chromatography
References
Author Index
Subject Index