Voets Biochemistry Adapted Edition 2021 / (Record no. 2412)

MARC details
000 -LEADER
fixed length control field 06830nam a22002297a 4500
003 - CONTROL NUMBER IDENTIFIER
control field OSt
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20240220020018.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 211102b2021 ii aaaa 000 0 eng c
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9789354243820
022 ## - INTERNATIONAL STANDARD SERIAL NUMBER
Source 9354243827
040 ## - CATALOGING SOURCE
Original cataloging agency eng
050 #4 - LIBRARY OF CONGRESS CALL NUMBER
Classification number QP514.2
Item number .V68 2021
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Voet, Donald
245 10 - TITLE STATEMENT
Title Voets Biochemistry Adapted Edition 2021 /
Statement of responsibility, etc. Donald Voet, Judith G. Voet
250 ## - EDITION STATEMENT
Edition statement Adapted ed 2021
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Place of publication, distribution, etc. WILEY INDIA
Date of publication, distribution, etc. (1 Jan. 2021)
300 ## - PHYSICAL DESCRIPTION
Extent 24 x 17.5 x
Dimensions 1 cm.
505 ## - FORMATTED CONTENTS NOTE
Formatted contents note Part I Introduction and Background<br/><br/>Chapter 1 Life<br/><br/>1. Prokaryotes<br/><br/>2. Eukaryotes<br/><br/>3. Biochemistry: A Prologue<br/><br/>4. Genetics: A Review<br/><br/>5. The Origin of Life<br/><br/>6. The Biochemical Literature<br/><br/> <br/><br/>Chapter 2 Aqueous Solutions<br/><br/>1. Properties of Water<br/><br/>2. Acids, Bases, and Buffers<br/><br/> <br/><br/>Chapter 3 Thermodynamic Principles: A Review<br/><br/>1. First Law of Thermodynamics: Energy Is Conserved<br/><br/>2. Second Law of Thermodynamics: The Universe Tends Toward Maximum Disorder<br/><br/>3. Free Energy: The Indicator of Spontaneity<br/><br/>4. Chemical Equilibria<br/><br/>Appendix: Concentration Dependence of Free Energy<br/><br/> <br/><br/>Part II Biomolecules<br/><br/>Chapter 4 Amino Acids<br/><br/>1. The Amino Acids of Proteins<br/><br/>2. Optical Activity<br/><br/>3. “Nonstandard” Amino Acids<br/><br/> <br/><br/>Chapter 5 Nucleic Acids, Gene Expression, and Recombinant DNA Technology<br/><br/>1. Nucleotides and Nucleic Acids<br/><br/>2. DNA Is the Carrier of Genetic Information<br/><br/>3. Double Helical DNA<br/><br/>4. Gene Expression and Replication: An Overview<br/><br/>5. Molecular Cloning<br/><br/> <br/><br/>Chapter 6 Techniques of Protein and Nucleic Acid Purifications<br/><br/>1. Protein Isolation<br/><br/>2. Solubilities of Proteins<br/><br/>3. Chromatographic Separations<br/><br/>4. Electrophoresis<br/><br/>5. Ultracentrifugation<br/><br/>6. Nucleic Acid Fractionation<br/><br/> <br/><br/>Chapter 7 Covalent Structures of Proteins and Nucleic Acids<br/><br/>1. Primary Structure Determination of Proteins<br/><br/>2. Nucleic Acid Sequencing<br/><br/>3. Chemical Evolution<br/><br/>4. Bioinformatics: An Introduction<br/><br/>5. Chemical Synthesis of Polypeptides<br/><br/>6. Chemical Synthesis of Oligonucleotides<br/><br/> <br/><br/>Chapter 8 Three-Dimensional Structures of Proteins<br/><br/>1. Secondary Structure<br/><br/>2. Fibrous Proteins<br/><br/>3. Globular Proteins<br/><br/>4. Protein Stability<br/><br/>5. Quaternary Structure<br/><br/>Appendix: Viewing Stereo Pictures<br/><br/> <br/><br/>Chapter 9 Protein Folding, Dynamics, and Structural Evolution<br/><br/>1. Protein Folding: Theory and Experiment<br/><br/>2. Folding Accessory Proteins<br/><br/>3. Protein Structure Prediction and Design<br/><br/>4. Protein Dynamics<br/><br/>5. Conformational Diseases: Amyloids and Prions<br/><br/>6. Structural Evolution<br/><br/> <br/><br/>Chapter 10 Hemoglobin: Protein Function in Microcosm<br/><br/>1. Hemoglobin and Myoglobin Function<br/><br/>2. Structure and Mechanism<br/><br/>3. Abnormal Hemoglobins<br/><br/>4. Allosteric Regulation<br/><br/>Appendix: Derivation of Symmetry Model Equations<br/><br/> <br/><br/>Chapter 11 Sugars and Polysaccharides<br/><br/>1. Monosaccharides<br/><br/>2. Polysaccharides<br/><br/>3. Glycoproteins<br/><br/> <br/><br/>Chapter 12 Lipids and Membranes<br/><br/>1. Lipid Classification<br/><br/>2. Properties of Lipid Aggregates<br/><br/>3. Biological Membranes<br/><br/>4. Membrane Assembly and Protein Targeting<br/><br/>5. Lipoproteins<br/><br/> <br/><br/>Part III Mechanisms of Enzyme Action<br/><br/>Chapter 13 Introduction to Enzymes<br/><br/>1. Historical Perspective<br/><br/>2. Substrate Specificity<br/><br/>3. Coenzymes<br/><br/>4. Regulation of Enzymatic Activity<br/><br/>5. A Primer of Enzyme Nomenclature<br/><br/> <br/><br/>Chapter 14 Rates of Enzymatic Reactions<br/><br/>1. Chemical Kinetics<br/><br/>2. Enzyme Kinetics<br/><br/>3. Inhibition<br/><br/>4. Effects of pH<br/><br/>5. Bisubstrate Reactions<br/><br/>Appendix: Derivations of Michaelis–Menten Equation Variants<br/><br/> <br/><br/>Chapter 15 Enzymatic Catalysis<br/><br/>1. Catalytic Mechanisms<br/><br/>2. Lysozyme<br/><br/>3. Serine Proteases<br/><br/>4. Drug Design<br/><br/> <br/><br/>Part IV Metabolism<br/><br/>Chapter 16 Introduction to Metabolism<br/><br/>1. Metabolic Pathways<br/><br/>2. Organic Reaction Mechanisms<br/><br/>3. Experimental Approaches to the Study of Metabolism<br/><br/>4. Thermodynamics of Phosphate Compounds<br/><br/>5. Oxidation–Reduction Reaction<br/><br/>6. Thermodynamics of Life<br/><br/> <br/><br/>Chapter 17 Glycolysis<br/><br/>1. The Glycolytic Pathway<br/><br/>2. The Reactions of Glycolysis<br/><br/>3. Fermentation: The Anaerobic Fate of Pyruvate<br/><br/>4. Metabolic Regulation and Control<br/><br/>5. Metabolism of Hexoses Other than Glucose<br/><br/> <br/><br/>Chapter 18 Glycogen Metabolism<br/><br/>1. Glycogen Breakdown<br/><br/>2. Glycogen Synthesis<br/><br/>3. Control of Glycogen Metabolism<br/><br/>4. Glycogen Storage Diseases<br/><br/> <br/><br/>Chapter 19 Signal Transduction<br/><br/>1. Hormones<br/><br/>2. Heterotrimeric G Proteins<br/><br/>3. Tyrosine Kinase–Based Signaling<br/><br/>4. The Phosphoinositide Cascade<br/><br/> <br/><br/>Chapter 20 Transport through Membranes<br/><br/>1. Thermodynamics of Transport<br/><br/>2. Kinetics and Mechanisms of Transport<br/><br/>3. ATP-Driven Active Transport<br/><br/>4. Ion Gradient–Driven Active Transport<br/><br/>5. Neurotransmission<br/><br/> <br/><br/>Chapter 21 Citric Acid Cycle<br/><br/>1. Cycle Overview<br/><br/>2. Metabolic Sources of Acetyl-Coenzyme A<br/><br/>3. Enzymes of the Citric Acid Cycle<br/><br/>4. Regulation of the Citric Acid Cycle<br/><br/>5. The Amphibolic Nature of the Citric Acid Cycle<br/><br/> <br/><br/>Chapter 22 Electron Transport and Oxidative Phosphorylation<br/><br/>1. The Mitochondrion<br/><br/>2. Electron Transport<br/><br/>3. Oxidative Phosphorylation<br/><br/>4. Control of ATP Production<br/><br/> <br/><br/>Chapter 23 Other Pathways of Carbohydrate Metabolism<br/><br/>1. Gluconeogenesis<br/><br/>2. The Glyoxylate Cycle<br/><br/>3. Biosynthesis of Oligosaccharides and Glycoproteins<br/><br/>4. The Pentose Phosphate Pathway<br/><br/> <br/><br/>Chapter 24 Photosynthesis<br/><br/>1. Chloroplasts<br/><br/>2. Light Reactions<br/><br/>3. Dark Reactions<br/><br/> <br/><br/>Chapter 25 Lipid Metabolism<br/><br/>1. Lipid Digestion, Absorption, and Transport<br/><br/>2. Fatty Acid Oxidation<br/><br/>3. Ketone Bodies<br/><br/>4. Fatty Acid Biosynthesis<br/><br/>5. Regulation of Fatty Acid Metabolism<br/><br/>6. Cholesterol Metabolism<br/><br/>7. Eicosanoid Metabolism: Prostaglandins, Prostacyclins, Thromboxanes, Leukotrienes, and Lipoxins<br/><br/>8. Phospholipid and Glycolipid Metabolism<br/><br/> <br/><br/>Chapter 26 Amino Acid Metabolism<br/><br/>1. Amino Acid Deamination<br/><br/>2. The Urea Cycle<br/><br/>3. Metabolic Breakdown of Individual Amino Acids<br/><br/>4. Amino Acids as Biosynthetic Precursors<br/><br/>5. Amino Acid Biosynthesis<br/><br/>6. Nitrogen Fixation<br/><br/> <br/><br/>Chapter 27 Energy Metabolism: Integration and Organ Specialization<br/><br/>1. Major Pathways and Strategies of Energy Metabolism: A Summary<br/><br/>2. Organ Specialization<br/><br/>3. Metabolic Homeostasis: Regulation of Appetite, Energy Expenditure, and Body Weight<br/><br/>4. Metabolic Adaptation<br/><br/> <br/><br/>Chapter 28 Nucleotide Metabolism<br/><br/>1. Synthesis of Purine Ribonucleotides<br/><br/>2. Synthesis of Pyrimidine Ribonucleotides<br/><br/>3. Formation of Deoxyribonucleotides<br/><br/>4. Nucleotide Degradation<br/><br/>5. Biosynthesis of Nucleotide Coenzymes<br/><br/> <br/><br/>Part V Expression and Transmission of Genetic Information<br/><br/>Chapter 29 Nucleic Acid Structures<br/><br/>1. Double Helical Structures<br/><br/>2. Forces Stabilizing Nucleic Acid Structures<br/><br/>3. Supercoiled DNA<br/><br/> <br/><br/>Chapter 30 DNA Replication, Repair, and Recombination<br/><br/>1. DNA Replication: An Overview<br/><br/>2. Enzymes of Replication<br/><br/>3. Prokaryotic Replication<br/><br/>4. Eukaryotic Replication<br/><br/>5. Repair of DNA<br/><br/>6. Recombination and Mobile Genetic Elements<br/><br/>7. DNA Methylation and Trinucleotide Repeat Expansions
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Biochemistry
700 ## - ADDED ENTRY--PERSONAL NAME
Personal name Voet, Judith G.
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Source of classification or shelving scheme Library of Congress Classification
Koha item type Books
Koha issues (borrowed), all copies 2
Holdings
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    Dewey Decimal Classification     Reference Main library Nursing Buliding Main library Nursing Buliding Reference 15/03/2022   QP514.2 .V68 2021 N5410 16/03/2022 15/03/2022 Books  
    Library of Congress Classification       Main library Nursing Buliding Main library Nursing Buliding   15/03/2022   QP514.2 .V68 2021 N5411 02/06/2022 15/03/2022 Books  
    Dewey Decimal Classification       Main library Nursing Buliding Main library Nursing Buliding   16/08/2022 1 QP514.2 .V68 2021 N5481 04/03/2024 16/08/2022 Books 19/02/2024
    Dewey Decimal Classification       Main library Nursing Buliding Main library Nursing Buliding   16/08/2022 1 QP514.2 .V68 2021 N5482 28/08/2023 16/08/2022 Books 27/02/2023
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