DNA and Protein Sequence Analysis

Author:   M. J. Bishop ,  C.J. Rawlings
Publisher:   Oxford University Press
Volume:   No.171
ISBN:  

9780199634644


Pages:   373
Publication Date:   01 January 1997
Format:   Hardback
Availability:   To order   Availability explained
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DNA and Protein Sequence Analysis


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Overview

This text focuses on sequence data - either lists of nucleotides or of amino acids - which are nowadays easily gathered using automated equipment. The real effort is involved in interpreting the data to produce predictions of protein structure or function. With the advent of worldwide computer networks, a plethora of software is now available for sequence analysis. This describes the techniques for computer analysis of sequence data, with the emphasis on general issues rather than specific algorithms. It is a revision of the 1987 IRL Press book, Nucleic Acid and Protein Sequence Analysis , by the same editors. It is aimed at post-graduate, post-doctoral researchers, and academic staff in the general area of protein science.

Full Product Details

Author:   M. J. Bishop ,  C.J. Rawlings
Publisher:   Oxford University Press
Imprint:   Oxford University Press
Volume:   No.171
Dimensions:   Width: 15.00cm , Height: 2.30cm , Length: 23.00cm
Weight:   0.760kg
ISBN:  

9780199634644


ISBN 10:   0199634645
Pages:   373
Publication Date:   01 January 1997
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Postgraduate, Research & Scholarly
Format:   Hardback
Publisher's Status:   Active
Availability:   To order   Availability explained
Stock availability from the supplier is unknown. We will order it for you and ship this item to you once it is received by us.

Table of Contents

1.: Molecular biology databases. 2.: The NCBI software tools. 3.: EBI databases and tools. 4.: Networked services. 5.: DNA sequencing methodology and software. 6.: Molecular biology software for the Apple Macintosh. 7.: Sequence comparison and alignment. 8.: Simple sequences of protein and DNA. 9.: Repetitive sequences in DNA. 10.: Isochores and synonymous substitutions in mammalian genes. 11.: Identifying genes in genomic DNA sequences. 12.: Prediction of mRNA sequence function. 13.: Forecasting protein function. 14.: DNA and RNA structure prediction. 15.: Phylogenetic estimation. 16.: Evolution and relationships of protein families

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