High-frequency disruption of the N-myc gene in embryonic stem and pre-B cell lines by homologous recombination
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Summary
It is demonstrated that selection of embryonic stem and pre-B cell lines for expression of a promoterless construct containing murine N-myc genomic sequences fused to a gene encoding neomycin resistance allows highly efficient recovery of variants in which the endogenous N- myc gene is disrupted.
- Type
- article
- Published
- 1990-04-01
- Cited by
- 65
- References
- 28
- Access
- Open access
- OpenAlex
- https://openalex.org/W1781623861
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31293456
Keywords
Biology, Homologous recombination, Gene targeting, Gene, Embryonic stem cell
References
- Insertion of DNA sequences into the human chromosomal β-globin locus by homologous recombination
- Definition of regions in human c-myc that are involved in transformation and nuclear localization
- IgH enhancer‐mediated deregulation of N‐myc gene expression in transgenic mice: generation of lymphoid neoplasias that lack c‐myc expression.
- Human proto-oncogene N-myc encodes nuclear proteins that bind DNA
- Identification and characterization of the protein encoded by the human N-myc oncogene.
- Contrasting patterns of myc and N-myc expression during gastrulation of the mouse embryo.
- Disruption of the proto-oncogene int-2 in mouse embryo-derived stem cells: a general strategy for targeting mutations to non-selectable genes
- Positive genetic selection for gene disruption in mammalian cells by homologous recombination.
- Structure and expression of the murine N-myc gene.
- The human myc gene family: structure and activity of L-myc and an L-myc pseudogene.
- Expression of N-myc in teratocarcinoma stem cells and mouse embryos
- Production of chimaeric mice containing embryonic stem (ES) cells carrying a homoeobox Hox 1.1 allele mutated by homologous recombination
- Production of a mutation in mouse En-2 gene by homologous recombination in embryonic stem cells
- Towards a molecular-genetic analysis of mammalian development.
- Differential expression of myc family genes during murine development
- N-myc can cooperate with ras to transform normal cells in culture.
- Proteins encoded by v-myc and c-myc oncogenes: identification and localization in acute leukemia virus transformants and bursal lymphoma cell lines.
- Germ-line transmission of a c-abl mutation produced by targeted gene disruption in ES cells.
- Germ-line transmission of genes introduced into cultured pluripotential cells by retroviral vector
- Hybridization of denatured RNA and small DNA fragments transferred to nitrocellulose.
Cited by
- Homologous recombination at c-fyn locus of mouse embryonic stem cells with use of diphtheria toxin A-fragment gene in negative selection.
- Gene targeting in embryonic stem cells.
- Enhanced selection for homologous-recombinant embryonic stem cell clones with a neomycin phosphotransferase gene in antisense orientation
- Analysis of R-Ras signalling pathways.
- myc family oncogenes in the development of normal and neoplastic cells.
- Low level of Hox1.3 gene expression does not preclude the use of promoterless vectors to generate a targeted gene disruption. off
- Episome-generated N-myc antisense RNA restricts the differentiation potential of primitive neuroectodermal cell lines
- Adenosine deaminase deficiency: a model system for human somatic cell gene correction therapy.
- Gene targeting in normal somatic cells: inactivation of the interferon–γ receptor in myoblasts
- Targeted gene disruption of the endogenous c-abl locus by homologous recombination with DNA encoding a selectable fusion protein.
- Myc represses primitive endoderm differentiation in pluripotent stem cells
- Modifying the Mouse: Design and Desire
- Embryonic lethality in mice homozygous for a targeted disruption of the N-myc gene.
- Modifying the mammalian genome by gene targeting.
- Gene targeting in murine embryonic stem cells: introduction of specific alterations into the mammalian genome.
- Modification of the apolipoprotein B gene in HepG2 cells by gene targeting.
- Genome manipulation in embryonic stem cells.
- Therapeutic gene targeting
- The MYCN oncogene and differentiation in neuroblastoma.
- Prospects for homologous recombination in human gene therapy
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