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Protein Structure Prediction: A Practical Approach

AUTHOR Sternberg, Michael J. E.; Sternberg, Michael J. E.; Sternberg, Michael J. E. et al.
PUBLISHER OUP Oxford (01/30/1997)
PRODUCT TYPE Paperback (Paperback)

Description
The prediction of the three-dimensional structure of a protein from its amino acid sequence is a problem faced by an increasing number of biological scientists. This book provides a practical guide to making these predictions by reviewing strategies of different computer modeling algorithms and highlighting the degree of confidence attributed to them. Also in the volume are descriptions of the following: the principles of protein folding; sequence homology and motif searches; prediction of secondary structure; homology modeling; modeling of antibody combining sites; tertiary fold recognition; modeling of transmembrane proteins; ab initio prediction; protein-ligand docking simulations; and the use of molecular mechanics and dynamics. both non-specialists who require guidance to identify and evaluate appropriate strategies and experts who require a contemporary view of the field, will find this volume a worthy addition to their research libraries.
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Product Format
Product Details
ISBN-13: 9780199634965
ISBN-10: 0199634963
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 318
Carton Quantity: 28
Product Dimensions: 6.17 x 0.74 x 9.23 inches
Weight: 1.10 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Chemistry - Organic
Science | Life Sciences - Biology
Science | Life Sciences - Biochemistry
Dewey Decimal: 547.75
Library of Congress Control Number: 96008970
Descriptions, Reviews, Etc.
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The prediction of the three-dimensional structure of a protein from its amino acid sequence is a problem faced by an increasing number of biological scientists. This book provides a practical guide to making these predictions by reviewing strategies of different computer modeling algorithms and highlighting the degree of confidence attributed to them. Also in the volume are descriptions of the following: the principles of protein folding; sequence homology and motif searches; prediction of secondary structure; homology modeling; modeling of antibody combining sites; tertiary fold recognition; modeling of transmembrane proteins; ab initio prediction; protein-ligand docking simulations; and the use of molecular mechanics and dynamics. both non-specialists who require guidance to identify and evaluate appropriate strategies and experts who require a contemporary view of the field, will find this volume a worthy addition to their research libraries.
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Paperback