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Macromolecular Crystallography

Macromolecular Crystallography

conventional and high-throughput methods

9780198520979
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Description
Macromolecular Crystallography is the study of macromolecules (proteins and nucleic acids) using X-ray crystallographic techniques in order to determine their molecular structure. The knowledge of accurate molecular structures is a pre-requisite for rational drug design, and for structure-based function studies to aid the development of effective therapeutic agents and drugs. The successful determination of the complete genome (genetic sequence) of several species (including humans) has recently directed scientific attention towards identifying the structure and function of the complete complement of proteins that make up that species; a new and rapidly growing field of study called structural genomics. There are now several important and well-funded global initiatives in operation to identify all of the proteins of key model species. One of the main requirementsfor these initiatives is a high-throughput crystallization facility to speed-up the protein identification process. The extent to which these technologies have advanced, calls for an updated review of current crystallographic theory and practice. This practical reference book features the latest conventional and high-throughput methods, and includes contributions from a team of internationally recognized leaders and experts. It will be of relevance and use to graduate students, research scientists and professionals currently working in the field of conventional and high-throughput macromolecular crystallography.
Product Details
OUP Oxford
84674
9780198520979
9780198520979

Data sheet

Publication date
2007
Issue number
1
Cover
hard cover
Pages count
292
Dimensions (mm)
194 x 253
Weight (g)
808
  • Classical Cloning, Expression and Purification; High-Throughput Cloning, Expression and Purification; Automation of Non-Conventional Crystallization Techniques for Screening and Optimisation; First Analysis of Macromolecular Crystals; In-House Macromolecular Data Collection; Solving the Phase Problem Using Isomorphous Replacement; Molecular Replacement Techniques for High-Throughput Structure Determination; MAD Phasing; Application of Direct Methods to Macromolecular Structure Solution; Phase Refinement through Density Modification; Getting a Macromolecular Model: Model Building, Refinement and Validation; High-Throughput Crystallographic Data Collection at Synchrotrons; Electron Density Fitting and Structure Validation; RNA Crystallogenesis; Crystallography in the Study of Protein-DNA Interaction; Virus Crystallography; Macromolecular Crystallography in Drug Design;
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