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PCR Site-Directed Mutagenesis Using Pyrococcus sp GB-D Polymerase Coupled to a Rapid Screening Procedure: Application to a β-Glucanase Gene

  • J. Pons*
  • , A. Planas
  • , M. Juncosa
  • , E. Querol
  • *Autor/a de correspondencia de este trabajo

Producción científica: Capítulo del libroCapítulorevisión exhaustiva

5 Citas (Scopus)

Resumen

PCR methodology is one of the fastest available procedures for site-directed mutagenesis (1,2). However, it has been criticized for a lack of reliability because of unwanted mismatches produced during the PCR reaction (3,4). In the present protocol, we describe an improvement on the efficiency of site-directed mutagenesis by PCR using the Pyrococcus species GB-D polymerase instead of the commonly used Thermus aquatiqus (Taq) polymerase. Taq polymerase lacks a 3′→5′ proofreading exonuclease activity that is not crucial for several PCR applications, but is advisable for site-directed mutagenesis experiments. Some thermophilic DNA polymerases have this activity, among them the Thermococcus litoralis and the Pyrococcus species GB-D enzymes. A 10-fold higher efficiency has been reported for these enzymes over that observed for Taq polymerase (5). PCR site-directed mutagenesis is specially suitable for protein engineers when it is coupled to a screening procedure directly performed on the transformant plates. In such cases the procedure is rapid (3 d from mutagenic primers to selection of clones) and efficient (98–100% of successful mutagenesis).
Idioma originalInglés
Título de la publicación alojadaPCR Cloning Protocols
Subtítulo de la publicación alojadaFrom Molecular Cloning to Genetic Engineering
EditoresBruce A. White
EditorialHumana Press
Páginas209-218
Número de páginas10
Edición1
ISBN (versión digital)978-1-59259-553-2
ISBN (versión impresa)978-0-89603-483-9
DOI
EstadoPublicada - 1997
Publicado de forma externa

Serie de la publicación

NombreMethods in molecular biology
EditorialHumana Press Inc.
Volumen67
ISSN (versión impresa)1064-3745
ISSN (versión digital)1940-6029

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