Protein Folding Protocols / Edition 1

Protein Folding Protocols / Edition 1

by Yawen Bai
ISBN-10:
1617376760
ISBN-13:
9781617376764
Pub. Date:
11/19/2010
Publisher:
Springer-Verlag New York, LLC
ISBN-10:
1617376760
ISBN-13:
9781617376764
Pub. Date:
11/19/2010
Publisher:
Springer-Verlag New York, LLC
Protein Folding Protocols / Edition 1

Protein Folding Protocols / Edition 1

by Yawen Bai
$169.99
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Overview

Infrared Temperature-Jump Study of the Folding Dynamics of a-Helices and b-Hairpins Feng Gai, Deguo Du, and Yao Xu The Use of High-Pressure Nuclear Magnetic Resonance to Study Protein Folding Michael W. Lassalle and Kazuyuki Akasaka Characterization of Denatured Proteins Using Residual Dipolar Couplings Erika B. Gebel and David Shortle Characterizing Residual Structure in Disordered Protein States Using Nuclear Magnetic Resonance David Eliezer Population and Structure Determination of Hidden Folding, Intermediates by Native-State Hydrogen Exchange-Directed Protein Engineering and Nuclear Magnetic Resonance Yawen Bai, Hanqiao Feng, and Zheng Zhou Characterizing Protein Folding Transition States Using Y-Analysis Adarsh D. Pandit, Bryan A. Krantz, Robin S. Dothager, and Tobin R. Sosnick Advances in the Analysis of Conformational Transitions in Peptides Using Differential Scanning Calorimetry Werner W. Streicher and George I. Makhatadze Application of Single Molecule Förster Resonance Energy Transfer to Protein Folding Benjamin Schuler Single Molecule Studies of Protein Folding Using Atomic Force Microscopy Sean P. Ng, Lucy G. Randles, and Jane Clarke Using Triplet-Triplet Energy Transfer to Measure Conformational Dynamics in Polypeptide Chains Beat Fierz, Karin Joder, Florian Krieger, and Thomas Kiefhaber A Hierarchical Protein Folding Scheme Based on the Building Block Folding Model Nurit Haspel, Gilad Wainreb, Yuval Inbar, Hui-Hsu (Gavin) Tsai, Chung-Jung Tsai, Haim J. Wolfson, and Ruth Nussinov Replica Exchange Molecular Dynamics Method for Protein Folding Simulation Ruhong Zhou Estimation of Folding Probabilities and F Values From Molecular Dynamics Simulations of Reversible Peptide Folding Francesco Rao, Giovanni Settanni, and Amedeo Caflisch PackingRegularities in Biological Structures Relate to Their Dynamics Robert L. Jernigan and Andrzej Kloczkowski Intermediates and Transition States in Protein Folding D. Thirumalai and Dmitri K. Klimov Thinking the Impossible: How to Solve the Protein Folding Problem With and Without Homologous Structures and Morem Rita Casadio, Piero Fariselli, Pier Luigi Martelli, and Gianluca Tasco Index

Product Details

ISBN-13: 9781617376764
Publisher: Springer-Verlag New York, LLC
Publication date: 11/19/2010
Series: Methods in Molecular Biology , #350
Edition description: Softcover reprint of hardcover 1st ed. 2006
Pages: 328
Product dimensions: 5.98(w) x 9.02(h) x 0.03(d)

Table of Contents

Infrared Temperature-Jump Study of the Folding Dynamics of—-Helices and—-Hairpins.- The Use of High-Pressure Nuclear Magnetic Resonance to Study Protein Folding.- Characterization of Denatured Proteins Using Residual Dipolar Couplings.- Characterizing Residual Structure in Disordered Protein States Using Nuclear Magnetic Resonance.- Population and Structure Determination of Hidden Folding Intermediates by Native-State Hydrogen Exchange-Directed Protein Engineering and Nuclear Magnetic Resonance.- Characterizing Protein Folding Transition States Using—-Analysis.- Advances in the Analysis of Conformational Transitions in Peptides Using Differential Scanning Calorimetry.- Application of Single Molecule Förster Resonance Energy Transfer to Protein Folding.- Single Molecule Studies of Protein Folding Using Atomic Force Microscopy.- Using Triplet-Triplet Energy Transfer to Measure Conformational Dynamics in Polypeptide Chains.- A Hierarchical Protein Folding Scheme Based on the Building Block Folding Model.- Replica Exchange Molecular Dynamics Method for Protein Folding Simulation.- Estimation of Folding Probabilities and— Values From Molecular Dynamics Simulations of Reversible Peptide Folding.- Packing Regularities in Biological Structures Relate to Their Dynamics.- Intermediates and Transition States in Protein Folding.- Thinking the Impossible.
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