OutKnocker: a web tool for rapid and simple genotyping of designer nuclease edited cell lines

JL Schmid-Burgk, T Schmidt, MM Gaidt… - Genome …, 2014 - genome.cshlp.org
JL Schmid-Burgk, T Schmidt, MM Gaidt, K Pelka, E Latz, TS Ebert, V Hornung
Genome research, 2014genome.cshlp.org
The application of designer nucleases allows the induction of DNA double-strand breaks
(DSBs) at user-defined genomic loci. Due to imperfect DNA repair mechanisms, DSBs can
lead to alterations in the genomic architecture, such as the disruption of the reading frame of
a critical exon. This can be exploited to generate somatic knockout cell lines. While high
genome editing activities can be achieved in various cellular systems, obtaining cell clones
that contain all-allelic frameshift mutations at the target locus of interest remains a laborious …
The application of designer nucleases allows the induction of DNA double-strand breaks (DSBs) at user-defined genomic loci. Due to imperfect DNA repair mechanisms, DSBs can lead to alterations in the genomic architecture, such as the disruption of the reading frame of a critical exon. This can be exploited to generate somatic knockout cell lines. While high genome editing activities can be achieved in various cellular systems, obtaining cell clones that contain all-allelic frameshift mutations at the target locus of interest remains a laborious task. To this end, we have developed an easy-to-follow deep sequencing workflow and the evaluation tool OutKnocker (www.OutKnocker.org), which allows convenient, reliable, and cost-effective identification of knockout cell lines.
genome.cshlp.org
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