Peptide arrays on membrane supports : synthesis and applications

Author(s)

    • Koch, Joachim
    • Michael, Mahler

Bibliographic Information

Peptide arrays on membrane supports : synthesis and applications

Joachim Koch, Michael Mahler (eds.)

(Springer lab manual)

Springer, c2002

Available at  / 4 libraries

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Note

Includes bibliographical references and index

Description and Table of Contents

Description

Proteins interacting with diverse ligands - proteins, peptides or DNA - are the basic principles underlying many biological processes, such as antigen-antibody binding, signal transduction or receptor binding. The technique of oligopeptide synthesis on a cellulose membrane and the subsequent binding assays allow the investigation of protein interactions. A particular advantage of these peptide arrays (SPOT - technology) is the high number of oligopeptide probes that can be tested in parallel. Detailed protocols for peptide synthesis, and the analysis of protein-protein, protein-DNA interactions as well as epitope mapping are presented in this manual. It is ideally suited not only for basic research laboratories but also for diagnostic and therapeutic applications since many diseases are related to dysfunctions in protein recognition and binding.

Table of Contents

1 SPOT Synthesis - Scope of Applications.- 2 Chemistry of Fmoc Peptide Synthesis on Membranes.- 3 Manual Peptide Synthesis.- 4 Automated Synthesis of Solid-Phase Bound Peptides.- 5 Epitope Mapping of Antibodies with Solid-Phase Oligopeptides.- 6 Protein-Protein Interactions.- 7 Analysis of Protein-DNA Interactions.- 8 Affinity Purification and Competition Assays Using Solid-Phase Oligopeptides.- 9 Mutational Analysis and Structure Predictions.- 10 Modification of Immobilized Peptides.- 11 Immobilized Peptides to Study Protein-Protein Interactions - Potential and Pitfalls.- Abbreviations.

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Details

  • NCID
    BA57212454
  • ISBN
    • 3540425322
  • Country Code
    gw
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Berlin ; New York
  • Pages/Volumes
    x, 173 p.
  • Size
    24 cm
  • Parent Bibliography ID
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