Protocols for Gene Analysis

  • Adrian J. Harwood

Part of the Methods in Molecular Biology book series (MIMB, volume 31)

Table of contents

  1. Front Matter
    Pages i-xiv
  2. Basic Recombinant Dna Techniques

    1. Front Matter
      Pages 1-1
    2. Matthew L. Poulin, Ing-Ming Chiu
      Pages 9-17
    3. Michael K. Trower, Greg S. Elgar
      Pages 19-33
    4. Barton E. Slatko
      Pages 35-45
  3. In Vitro Mutagenesis

    1. Front Matter
      Pages 47-47
    2. Denise Clark, Steven Henikoff
      Pages 47-55
    3. Grace M. Hobson, Patricia P. Harlow, Pamela A. Benfield
      Pages 79-85
    4. Patricia P. Harlow, Grace M. Hobson, Pamela A. Benfield
      Pages 87-96
    5. Claude G. Lerner, Masayori Inouye
      Pages 97-112
  4. Genomic Structure

    1. Front Matter
      Pages 113-113
    2. Frank Merante, Sandeep Raha, Juta K. Reed, Gerald Proteau
      Pages 113-120
    3. Christoph Heller
      Pages 135-146
    4. Ian Durrant, Sue Fowler
      Pages 163-175
    5. Daniel L. Hartl, Howard Ochman
      Pages 187-196
  5. Sequence Variations

    1. Front Matter
      Pages 197-197
    2. Lloyd G. Mitchell, Angelika Bodenteich, Carl R. Merril
      Pages 197-203
    3. Karsten Henco, Jutta Harders, Ulrich Wiese, Detlev Riesner
      Pages 211-228
    4. Jie Kang, Jutta Harders, Detlev Riesner, Karsten Henco
      Pages 229-235
    5. Lambert Busque, D. Gary Gilliland
      Pages 237-246
    6. Geraldine A. Phear, Janet Harwood
      Pages 247-256
  6. Gene Expression

    1. Front Matter
      Pages 257-257
    2. Roberto Mantovani
      Pages 289-298
    3. Stephane Viville, Roberto Mantovani
      Pages 299-305
    4. Rene L. Myers, Ing-Ming Chiu
      Pages 307-316
  7. Protein-Dna Interactions

    1. Front Matter
      Pages 317-317
    2. Hans Peter Saluz, Jean-Pierre Jost
      Pages 317-329
    3. Scott L. Klakamp, Jacqueline K. Barton
      Pages 331-337
    4. Valerie Scott, Andrew R. Clark, Kevin Docherty
      Pages 339-347
    5. Jacques Philippe
      Pages 349-361
  8. Protein Function

    1. Front Matter
      Pages 371-371
    2. Joanne Crowe, Heinz Dobeli, Reiner Gentz, Erich Hochuli, Dietrich Stiiber, Karsten Henco
      Pages 371-387
  9. Back Matter
    Pages 409-411

About this book


It is now twenty years since Cohen and Boyer's first steps into DNA cloning. In the time since then, there has been an ever increasing acc- eration in the development and application of the cloning methodology. With the recent development of the polymerase chain reaction, a second generation of the technology has been born, enabling the isolation of DNA (and in particular, genes) with little more information than the p- tial knowledge of the sequence. In fact, DNA sequencing is now so advanced that it can almost be carried out on the industrial scale. As a consequence of these advances, it now appears feasible to sequence whole genomes, including one the size of the human. What are we going to do with this information? The future of basic molecular biology must lie in the ability to analyze DNA (and especially the genes within it) starting at the DNA level. It is for these problems that Protocols for Gene Analysis attempts to offer solutions. So you have a piece of DNA, possibly a gene--what do you do next? The first section of this book contains a number of "basic" te- niques that are required for further manipulation of the DNA. This s- tion is not intended to be a comprehensive collection of methods, but merely to serve as an up-to-date set of techniques. I refer you to other volumes in the Methods Molecular Biology series for further rec- binant DNA techniques.

Editors and affiliations

  • Adrian J. Harwood
    • 1
  1. 1.Medical Research CouncilCambridgeUK

Bibliographic information

  • DOI
  • Copyright Information Humana Press 1994
  • Publisher Name Humana Press
  • eBook Packages Springer Protocols
  • Print ISBN 978-0-89603-258-3
  • Online ISBN 978-1-59259-518-1
  • Series Print ISSN 1064-3745
  • Series Online ISSN 1940-6029
  • Buy this book on publisher's site
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