000 05840nam a2201201 4500
003 MN-UlNUM
005 20220511153423.0
008 220510b2009 xxu||||| |||| 00| 0 eng d
020 _a978-1118687482
040 _afirst lib
082 _a572.028
084 _2sudalgaa
_a28.071
_bS 53
_q2
100 _aSheehan D
240 _a28.071 S 53
245 _aPhysical biochemistry: Principles and applications
250 _a2nd ed
260 _aHoboken, NJ
_bWiley-Blackwell
_c2009
300 _a407
500 _aГФ 20361
505 _a"As will be seen, there is not much missing here. I thought that the sections were well balanced, with rarely too much or too little on a given topic...This is a text to be welcomed by both teachers and students." BIOCHEMISTRY & MOLECULAR BIOLOGY EDUCATION (on the first edition) The second edition of this successful textbook explains the basic principles behind the key techniques currently used in the modern biochemical laboratory and describes the pros and cons of each technique and compares one to another. It is non-mathematical, comprehensive and approachable for students who are not physical chemists. A major update of this comprehensive, accessible introduction to physical biochemistry. Includes two new chapters on proteomics and bioinformatics. Introduces experimental approaches with a minimum of mathematics and numerous practical examples. Provides a bibliography at the end of each chapter. Written by an author with many years teaching and research experience, this text is a must-have for students of biochemistry, biophysics, molecular and life sciences and food science.
546 _aEnglish
653 _abiophysics
653 _abiochemistry
653 _aphysical biochemistry
740 _aChapter 1 Introduction.
740 _a1.1 Special Chemical Requirements of Biomolecules.
740 _a1.2 Factors Affecting Analyte Structure and Stability
740 _a1.3 Buffering Systems Used in Biochemistry
740 _a1.4 Quantitation, Units and Data Handling
740 _a1.5 The Worldwide Web as a Resource in Physical Biochemistry
740 _a1.6 Objectives of this Volume
740 _aChapter 2 Chromatography
740 _a2.1 Principles of Chromatography
740 _a2.2 Performance Parameters Used in Chromatography
740 _a2.3 Chromatography Equipment
740 _a2.4 Modes of Chromatography
740 _a2.5 Open Column Chromatography
740 _a2.6 High Performance Liquid Chromatography (HPLC)
740 _a2.7 Fast Protein Liquid Chromatography
740 _a2.8 Perfusion Chromatography
740 _a2.9 Membrane-Based Chromatography Systems
740 _a2.10 Chromatography of a Sample Protein
740 _aChapter 3 Spectroscopic Techniques
740 _a3.1 The Nature of Light
740 _a3.2 The Electromagnetic Spectrum
740 _a3.3 Ultraviolet/Visible Absorption Spectroscopy
740 _a3.4 Fluorescence Spectroscopy
740 _a3.5 Spectroscopic Techniques Using Plane-Polarized Light
740 _a3.6 Infrared Spectroscopy
740 _a3.7 Nuclear Magnetic Resonance (NMR) Spectroscopy
740 _a3.8 Electron Spin Resonance (ESR) Spectroscopy
740 _a3.9 Lasers
740 _a3.10 Surface Plasmon Resonance
740 _aChapter 4 Mass Spectrometry
740 _a4.1 Principles of Mass Spectrometry
740 _a4.2 Mass Spectrometry of Proteins/Peptides
740 _a4.3 Interfacing MS with other Methods
740 _a4.4 Uses of Mass Spectrometry in Biochemistry
740 _aChapter 5 Electrophoresis
740 _a5.1 Principles of Electrophoresis
740 _a5.2 Nondenaturing Electrophoresis
740 _a5.3 Denaturing Electrophoresis
740 _a5.4 Electrophoresis in DNA Sequencing
740 _a5.5 Isoelectric Focusing (IEF)
740 _a5.6 Immunoelectrophoresis
740 _a5.7 Agarose Gel Electrophoresis of Nucleic Acids
740 _a5.8 Pulsed Field Gel Electrophoresis
740 _a5.9 Capillary Electrophoresis
740 _a5.10 Electroblotting Procedures
740 _a5.11 Electroporation
740 _aChapter 6 Three-Dimensional Structure Determination of Macromolecules.
740 _a6.1 The Protein-Folding Problem
740 _a6.2 Structure Determination by NMR
740 _a6.3 Crystallization of Biomacromolecules
740 _a6.3 Crystallization of Biomacromolecules
740 _a6.5 Calculation of Electron Density Maps
740 _a6.6 Other Diffraction Methods
740 _a6.7 Comparison of X-Ray Crystallography with Multi-Dimensional NMR
740 _a6.8 Structural Databases
740 _aChapter 7 Hydrodynamic Methods
740 _a7.1 Viscosity
740 _a7.2 Sedimentation
740 _a7.3 Methods for Varying Buffer Conditions
740 _a7.4 Flow Cytometry
740 _aChapter 8 Biocalorimetry
740 _a8.1 The Main Thermodynamic Parameters
740 _a8.2 Isothermal Titration Calorimetry
740 _a8.3 Differential Scanning Calorimetry
740 _a8.4 Determination of Thermodynamic Parameters by Non-Calorimetric Means.
740 _aChapter 9 Bioinformatics
740 _a9.1 Overview of Bioinformatics
740 _a9.2 Sequence Databases
740 _a9.3 Tools for Analysis of Primary Structures
740 _a9.4 Tertiary Structure Databases
740 _a9.5 Programs for Analysis and Visualization of Tertiary Structure Databases
740 _a9.6 Homology Modelling
740 _aChapter 10 Proteomics
740 _a10.1 Electrophoresis in Proteomics
740 _a10.2 Mass Spectrometry in Proteomics
740 _a10.3 Chip Technologies in Proteomics
740 _a10.4 Post-Translational Modification Proteomics
942 _cBK
999 _c124764
_d124764