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456 Pages
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Industry Reviews
R.L. Schowen, Professor Emeritus Chemistry, Molecular Biosciences and Pharmaceutical Chemistry, University of Kansas
`Comprehensive Enzyme Kinetics is an excellent addition to the enzyme kinetics literature. It touches on all of the topics in the various areas of kinetics that might be of interest to the enzymologist. It will make a fine classroom reference text.'
Herbert J. Fromm, Distinguished Professor, Iowa State University
| Introduction | p. 1 |
| Enzyme Structure | p. 1 |
| The Active Site | p. 6 |
| Chemical Kinetics | p. 11 |
| Molecularity and Order of Reaction | p. 11 |
| Determination of the Order of Reaction | p. 14 |
| Determination of Rate Constants | p. 14 |
| Reversible Reactions | p. 16 |
| Consecutive Reactions | p. 18 |
| Influence of Temperature on Rate Constants | p. 19 |
| Properties of Water | p. 23 |
| Ionization of Acids | p. 24 |
| Dimensions and Dimensional Analysis | p. 28 |
| Kinetics of Monosubstrate Reactions | p. 31 |
| Work of Michaelis and Menten | p. 31 |
| Steady-State Approximation | p. 34 |
| Reversible Mechanism with One Central Complex | p. 36 |
| Reversible Mechanism with Two Central Complexes | p. 37 |
| Equilibrium Constant and the Haldane Relationship | p. 39 |
| Rate Equations in Coefficient Form | p. 40 |
| Enzyme Distribution Equations | p. 40 |
| Hyperbolic Nature of the Michaelis-Menten Equation | p. 41 |
| Significance of Kinetic Parameters | p. 42 |
| Graphical Presentation of Data | p. 45 |
| Dimensional Analysis | p. 48 |
| Derivation of Rate Equations | p. 51 |
| Velocity Equations for Rapid Equilibrium Systems | p. 51 |
| Net Rate Constant Method | p. 52 |
| Method of King and Altman | p. 55 |
| The Method of Cha | p. 65 |
| The Systematic Approach | p. 67 |
| Comparison of Different Methods | p. 69 |
| Linear Inhibition | p. 73 |
| Classification of Inhibitors | p. 73 |
| Competitive Inhibition | p. 74 |
| Noncompetitive Inhibition | p. 76 |
| Uncompetitive Inhibition | p. 79 |
| Characteristics of Linear Inhibition | p. 81 |
| Dead-End Inhibition in Steady-State Bisubstrate Systems | p. 83 |
| Inhibition by a Mixture of Two Inhibitors | p. 88 |
| Hyperbolic and Parabolic Inhibition | p. 95 |
| Hyperbolic Inhibition in Monosubstrate Reactions | p. 95 |
| Determination of Kinetic Constants in Hyperbolic Inhibition | p. 98 |
| Variations of Hyperbolic Inhibition in Monosubstrate Reactions | p. 99 |
| Hyperbolic Inhibition in Bisubstrate Reactions | p. 102 |
| Parabolic Inhibition in Monosubstrate Reactions | p. 105 |
| Nomenclature of Double Reciprocal Plots in the Presence of Inhibitors | p. 108 |
| Enzyme Activation | p. 111 |
| Nonessential Activation | p. 111 |
| Essential Activation | p. 114 |
| Kinetics of Rapid Equilibrium Bisubstrate Reactions | p. 117 |
| Nomenclature | p. 117 |
| Rapid Equilibrium Ordered System | p. 119 |
| Rapid Equilibrium Random System | p. 122 |
| Product Inhibition in a Rapid Equilibrium Ordered Bi Bi System | p. 124 |
| Product Inhibition in a Rapid Equilibrium Random Bi Bi System | p. 128 |
| Rapid Equilibrium Random Bi Bi System with a Dead-End EBQ Complex | p. 129 |
| A Random Model with Two Dead-End Complexes | p. 134 |
| Diagnostics of Rapid Equilibrium Systems | p. 135 |
| Steady-State Kinetics of Bisubstrate Reactions | p. 139 |
| Nomenclature | p. 139 |
| Ordered Bi Bi System | p. 141 |
| Theorell-Chance Mechanism | p. 155 |
| Ordered Uni Bi and Ordered Bi Uni Systems | p. 157 |
| Ping Pong Bi Bi Mechanism | p. 160 |
| Steady-State Random Bi Uni Mechanism | p. 166 |
| Isomerization of Transitory Complexes and Stable Enzyme Forms | p. 168 |
| Kinetic Analysis of Bisubstrate Mechanisms | p. 171 |
| Prediction of Initial Velocity Patterns | p. 172 |
| Product Inhibition | p. 177 |
| Analysis of Intersection Points | p. 179 |
| Special Relationships between the Constants | p. 181 |
| Complex Bisubstrate Mechanisms with a Central Ternary Complex | p. 183 |
| Complex Ping Pong Mechanisms | p. 186 |
| Examples of Enzyme Bisubstrate Mechanisms | p. 187 |
| Substrate Inhibition and Mixed Dead-End and Product Inhibition | p. 191 |
| Rational Polynomials | p. 191 |
| Substrate Inhibition | p. 192 |
| Non-Productive Binding | p. 202 |
| Mixed Dead-End and Product Inhibition | p. 202 |
| Summary of Inhibition Types | p. 205 |
| Trisubstrate Mechanisms | p. 209 |
| Prediction of Reaction Sequences in Trisubstrate Mechanisms | p. 209 |
| Rate Equations in the Absence of Products | p. 216 |
| Full Rate Equations for Ter Bi Systems | p. 222 |
| Full Rate Equations for Ter Ter Systems | p. 227 |
| Product Inhibition in Trisubstrate Mechanisms | p. 237 |
| Examples of Enzyme Trisubstrate Mechanisms | p. 240 |
| Cooperative and Allosteric Effects | p. 243 |
| Cooperative Versus Allosteric Effects | p. 243 |
| Noncooperative Binding | p. 247 |
| Positive Cooperativity | p. 250 |
| Negative Cooperativity | p. 256 |
| Monod, Wyman, and Changeux Model (MWC Model) | p. 257 |
| Application of the MWC Model to Enzymes | p. 261 |
| Koshland, Nemethy, and Filmer Models (KNF Models) | p. 271 |
| Comparison of Various Models | p. 278 |
| The pH Dependence of Enzyme Catalysis | p. 283 |
| Introduction | p. 283 |
| Dissociation of Dibasic Acids | p. 284 |
| Effects of pH on Kinetics of Monosubstrate Reactions | p. 286 |
| Effects of pH on Kinetics of Bisubstrate Reactions | p. 295 |
| pH Profiles | p. 299 |
| Interpretation of pH Profiles | p. 304 |
| Summary of Procedures to Follow the pH Studies | p. 312 |
| Effects of Temperature on Enzyme Reactions | p. 317 |
| Free Energy Profiles | p. 317 |
| Separation and Estimation of Rate Constants | p. 321 |
| Heat of Ionization of Amino Acid Side Chains in Enzymes | p. 323 |
| Solvent Perturbation | p. 326 |
| Isotope Exchange | p. 329 |
| Principles of Isotope Exchange | p. 329 |
| Isotopic Exchange at Chemical Equilibrium in Sequential Mechanisms | p. 330 |
| Specific Examples of Sequential Mechanisms | p. 342 |
| Sequential Mechanisms away from Equilibrium | p. 344 |
| Isotopic Exchange in Ping Pong Mechanisms | p. 345 |
| Abortive Complex Formation | p. 350 |
| Kinetic Isotope Effects | p. 353 |
| Origin of Isotope Effects | p. 353 |
| Tritium versus Deuterium Kinetic Isotope Effects | p. 358 |
| Kinetic Isotope Effects on V[subscript max] and V[subscript max]/K[subscript M] in Enzymatic Reactions | p. 359 |
| Determination of Kinetic Isotope Effects | p. 369 |
| Kinetic Mechanism from the Variation of Substrates and Products | p. 375 |
| Kinetic Mechanism from the Variation of Kinetic Isotope Effects with pH | p. 378 |
| Isotope Trapping | p. 382 |
| Heavy-Atom Kinetic Isotope Effects | p. 383 |
| Secondary Isotope Effects | p. 384 |
| Solvent Isotope Effects | p. 385 |
| Statistical Analysis of Initial Rate and Binding Data | p. 391 |
| Statistics | p. 391 |
| Analysis of Initial Rate Data | p. 399 |
| Model Discrimination | p. 411 |
| Integrated Michaelis-Menten Equation | p. 413 |
| Subject Index | p. 421 |
| Table of Contents provided by Rittenhouse. All Rights Reserved. |
ISBN: 9780306467127
ISBN-10: 0306467127
Published: 31st March 2003
Format: Hardcover
Language: English
Number of Pages: 456
Audience: Professional and Scholarly
Publisher: Springer Nature B.V.
Country of Publication: US
Dimensions (cm): 23.5 x 17.15 x 3.81
Weight (kg): 0.77
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