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Protein NMR : modern techniques and biomedical applications

Author: Lawrence J Berliner
Publisher: New York : Springer, 2015.
Series: Biological magnetic resonance, volume 32.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book covers new techniques in protein NMR, from basic principles to state-of-the-art research. It covers a spectrum of topics ranging from a 2toolbox3 for how sequence-specific resonance assignments can be obtained using a suite of 2D and 3D NMR experiments and tips on how overlap problems can be overcome. Further topics include the novel applications of Overhauser dynamic nuclear polarization methods (DNP),  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Printed edition:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Lawrence J Berliner
ISBN: 9781489976215 1489976213 1489976205 9781489976208
OCLC Number: 919201455
Description: 1 online resource (x, 185 pages) : illustrations (some color).
Contents: 4.7 Completing Side-Chain 13C/1H Assignments Using 13C HCCH-COSY/TOCSY4.8 Triple Resonance Methods with Deuteration; 4.9 Triple Resonance Methods for Proteins Above 40 kD; 5 The Sequential Assignment Method; 5.1 2D and 3D Experiments for 15N-Labelled Proteins; 5.2 Stage 1: Spin System Identification from 3D TOCSY-HSQC and 3D HNHA; 5.3 Stage 2: Sequence-Specific Assignment from 3D NOESY-HSQC and HSQC-NOESY-HSQC; 6 Conclusion; References; Mapping Out Protein Hydration Dynamics by Overhauser Dynamic Nuclear Polarization; 1 Introduction; 1.1 Biophysical Tools to Study Protein Hydration. 1.2 Introduction to ODNP2 Methodology; 2.1 Theory of ODNP in Solution; 2.2 Experimental Quantification of ODNP in Solution; 3 Application to Protein Folding, Protein Aggregation, Membrane Protein Topology, and Membrane-Protein Interaction; 4 Opportunities of Overhauser DNP for Studying Protein Hydration; References; Relaxation Dispersion NMR Spectroscopy; 1 Introduction; 1.1 History-Development of Relaxation Dispersion NMR; 1.2 Theoretical Aspects of Chemical Exchange; 2 Relaxation Dispersion Experiments; 2.1 Nitrogen-Based Relaxation Dispersion Experiments. 4.4 Structure Determination in Membrane-Mimetics4.5 Dynamics; 5 Outlook; References; Line Narrowing in Oriented-Sample NMR of Membrane Proteins; 1 Introduction; 1.1 Why Study Membrane Proteins in Their Native-like Bilayer Environment?; 1.2 Solid-State NMR Methods for Structure Determination of Membrane Proteins; 1.3 Structural Information from Solid-State NMR of Macroscopically Aligned Samples; 2 Requirements for High-Resolution Oriented-Sample NMR Spectra of Membrane Proteins; 2.1 Effects of Uniaxial Rotational Diffusion on Solid-State NMR Spectra of Membrane Proteins.
Series Title: Biological magnetic resonance, volume 32.
Responsibility: Lawrence Berliner, editor.

Abstract:

Protein NMR. Modern Techniques and Biomedical Applications.  Read more...

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