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Updated: Aug 17, 2026

Generation of Genomic Deletions in Mammalian Cell Lines via CRISPR/Cas9
Published on: January 3, 2015
Predetermined chromosomal deletion encompassing the Nf-1 gene
T Schlake1, I Schupp, K Kutsche
1Department of Developmental Immunology, Max-Planck-Institute for Immunobiology, Stuebeweg 51, D-79108 Freiburg, Germany.
Abstract:
Complex chromosomal rearrangements (deletions, inversions, translocations) are a hallmark of human tumour cells. Yet, the generation of animal models for gross chromosomal abnormalities still presents a formidable challenge. Here, we describe a versatile procedure for chromosomal engineering that was used to generate an ES cell line with a megabase deletion encompassing the tumour suppressor gene neurofibromatosis-1 (Nf-1) on mouse chromosome 11, which is often deleted in tumours of neural crest origin. Homologous recombination into sites flanking Nf-1 was used to introduce artificial sequences (triple-helix, loxP, vector backbone) that can be employed for in vitro recovery of intervening sequences or the generation of in vivo deletions. This strategy may be developed into a scheme by which large chromosomal regions with precisely defined end points may be excised from mammalian cells and reintroduced after suitable in vitro modification.
Insights
Scientists engineered a mouse cell line with a large deletion of the Nf-1 tumor suppressor gene. This advance aids in creating animal models for complex chromosomal abnormalities and studying neural crest tumors.
Area of Science:
- Genetics
- Cancer Biology
- Genomic Engineering
Background:
- Complex chromosomal rearrangements are common in human tumors.
- Developing animal models for these abnormalities is challenging.
Purpose of the Study:
- To develop a versatile method for chromosomal engineering.
- To generate a mouse ES cell line with a megabase deletion of the Nf-1 gene.
Main Methods:
- Utilized homologous recombination to introduce artificial sequences flanking the Nf-1 gene.
- Engineered ES cells for in vitro recovery or in vivo deletion of large chromosomal regions.
Main Results:
- Successfully generated an ES cell line with a megabase deletion on mouse chromosome 11.
- The deletion encompasses the neurofibromatosis-1 (Nf-1) tumor suppressor gene.
Conclusions:
- The described procedure enables precise excision of large chromosomal regions from mammalian cells.
- This strategy facilitates the generation of novel animal models for cancer research and genetic studies.
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