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Item Details
Title: CRYSTALS, X-RAYS AND PROTEINS
COMPREHENSIVE PROTEIN CRYSTALLOGRAPHY
By: Dennis Sherwood, Jon Cooper
Format: Paperback

List price: £54.00
Our price: £47.25
Discount:
12.5% off
You save: £6.75
ISBN 10: 0198726325
ISBN 13: 9780198726326
Availability: Usually dispatched within 1-3 weeks.
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Publisher: OXFORD UNIVERSITY PRESS
Pub. date: 19 March, 2015
Pages: 656
Description: Information derived from X-ray crystal structures of biological molecules allows us to explain their functions in living organisms in extraordinary detail, and to develop drugs to treat disease. This book describes the principles and practice of X-ray diffraction as a key technique at the forefront of new discoveries in biology and medicine.
Synopsis: A complete account of the theory of the diffraction of X-rays by crystals, with particular reference to the processes of determining the structures of protein molecules. This book is aimed primarily at structural biologists and biochemists but will also be valuable to those entering the field with a background in physical sciences or chemistry. It may be used at any post-school level, and develops from first principles all relevant mathematics, diffraction and wave theory, assuming no mathematical knowledge beyond integral calculus.The book covers a host of important topics in the area, including: - The practical aspects of sample preparation and X-ray data collection, using both laboratory and synchrotron sources - Data analysis at both theoretical and practical levels - The important role played by the Patterson function in structure analysis, by both molecular replacement and experimental phasing approaches - Methods for improving the resulting electron density map - The theoretical basis of methods used in refinement of protein crystal structures - In-depth explanation of the crucial task of defining the binding sites of ligands and drug molecules - The complementary roles of other diffraction methods: these reveal further detail of great functional importance in a crystal structure.
Illustrations: 250 b/w line and halftone illustrations
Publication: UK
Imprint: Oxford University Press
Returns: Returnable
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