<P>X-ray crystallography is the pre-eminent technique for visualizing the structures of macromolecules at atomic resolution. These structures are central to understanding the detailed mechanisms of biological processes, and to discovering novel therapeutics using a structure-based approach. As yet,
Evolving Methods for Macromolecular Crystallography: The Structural Path to the Understanding of the Mechanismof Action of CBRN Agents
β Scribed by Terese Bergfors (auth.), Randy J. Read, Joel L. Sussman (eds.)
- Publisher
- Springer Netherlands
- Year
- 2007
- Tongue
- English
- Leaves
- 192
- Series
- NATO Science Series 245
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
This volume comprises papers presented at the 2005 edition of the βCrystallography of Molecular Biologyβ courses that have been held since 1976 at the Ettore Majorana Centre for Scientific Culture in Erice, Italy. This series of courses is renowned for bringing leaders in the field of macromo- cular crystallography together with highly motivated students, in a beautiful and intimate location that encourages people to interact. The warm and informal atmosphere at these Erice conferences, especially these on cryst- lography, has helped to foster long-term scientific interactions and new int- national friendships that have often lasted for the lifetime of the scientists. The course was financed by NATO as an Advanced Study Institute and by the European Commission as a EuroSummerSchool. The papers span the breadth of material presented in the course, which emphasized the practical aspects of modern macromolecular crystallography and its applications. One must start with crystals: Bergfors showed how to improve initial crystals through seeding, while Byrne discussed the difficult problem of crystallizing membrane proteins. The collection of optimal diffraction data requires both careful preparation of cryo-cooled crystals (Garman) and proper processing of the diffraction images (Leslie). To obtain images of electron density, one needs estimates of the phases of the diffracted spots. Sheldrick presented the background to the sing- wavelength anomalous diffraction (SAD) method, which has been gaining popularity, and McCoy discussed the basis of modern maximum likelihood methods for treating information in experimental phasing.
β¦ Table of Contents
Front Matter....Pages i-viii
Succeeding with seeding: some practical advice....Pages 1-10
Expression, purification, and crystallisationof membrane proteins....Pages 11-23
Macromolecular cryo-crystallography....Pages 25-40
Processing diffraction data with mosflm....Pages 41-51
Sad phasing: basic concepts and high-throughput....Pages 53-65
Likelihood-based experimental phasing in phaser....Pages 67-77
Stochastic molecular replacement....Pages 79-90
Likelihood-based molecular replacement in phaser....Pages 91-100
Automated structure determination with phenix....Pages 101-109
Density Modification In Main....Pages 111-122
Ab initio phasing starting from low resolution....Pages 123-133
Structural genomics of mycobacterium tuberculosis: a search for function and new drug targets....Pages 135-144
Three-dimensional domain swapping and its relevance to conformational diseases....Pages 145-163
Structural bioinformatics: from protein structure to function....Pages 165-179
Single-particle imaging....Pages 181-191
β¦ Subjects
Crystallography; Biophysics and Biological Physics; Bioinformatics; Computer Appl. in Life Sciences
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