ESI mutagenesis: a one-step method for introducing mutations into bacterial artificial chromosomes

Bacterial artificial chromosome (BAC)-based transgenes have emerged as a powerful tool for controlled and conditional interrogation of protein function in higher eukaryotes. Although homologous recombination-based recombineering methods have streamlined the efficient integration of protein tags onto...

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Veröffentlicht in:Life science alliance 2021-02, Vol.4 (2), p.e202000836, Article 202000836
Hauptverfasser: Rondelet, Arnaud, Pozniakovsky, Andrei, Namboodiri, Devika, da Silva, Richard Cardoso, Singh, Divya, Leuschner, Marit, Poser, Ina, Ssykor, Andrea, Berlitz, Julian, Schmidt, Nadine, Roehder, Lea, Vader, Gerben, Hyman, Anthony A., Bird, Alexander W.
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Sprache:eng
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Zusammenfassung:Bacterial artificial chromosome (BAC)-based transgenes have emerged as a powerful tool for controlled and conditional interrogation of protein function in higher eukaryotes. Although homologous recombination-based recombineering methods have streamlined the efficient integration of protein tags onto BAC transgenes, generating precise point mutations has remained less efficient and time-consuming. Here, we present a simplified method for inserting point mutations into BAC transgenes requiring a single recombineering step followed by antibiotic selection. This technique, which we call exogenous/synthetic intronization (ESI) mutagenesis, relies on co-integration of a mutation of interest along with a selectable marker gene, the latter of which is harboured in an artificial intron adjacent to the mutation site. Cell lines generated from ESI-mutated BACs express the transgenes equivalently to the endogenous gene, and all cells efficiently splice out the synthetic intron. Thus, ESI mutagenesis provides a robust and effective single-step method with high precision and high efficiency for mutating BAC transgenes.
ISSN:2575-1077
2575-1077
DOI:10.26508/lsa.202000836