Tissue Distribution of N‐myc Expression in the Early Organogenesis Period of the Mouse Embryo
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Summary
N‐myc expression was especially high in the migrating sclerotomes derived from caudal halves of the somites, primitive nephric tubules, and mesenchymes condensed around the digestive tract and in the limb buds.
- Type
- article
- Published
- 1991-02-01
- Cited by
- 30
- References
- 32
- Access
- Open access
- OpenAlex
- https://openalex.org/W1497412284
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:82519511
Keywords
Embryo, Biology, In situ hybridization, Primordium, Organogenesis
References
- Sequence of the murine and human cellular myc oncogenes and two modes of myc transcription resulting from chromosome translocation in B lymphoid tumours.
- Hox‐7, a mouse homeobox gene with a novel pattern of expression during embryogenesis.
- Tissue interactions and development
- Pepsinogen gene transcription induced in heterologous epithelial-mesenchymal recombinations of chicken endoderms and glandular stomach mesenchyme.
- Rapid and transient decrease of N-myc expression in retinoic acid-induced differentiation of OTF9 teratocarcinoma stem cells.
- Human proto-oncogene N-myc encodes nuclear proteins that bind DNA
- Organization and expression of the chicken N-myc gene
- Identification and characterization of the protein encoded by the human N-myc oncogene.
- Asymmetric expression in somites of cytotactin and its proteoglycan ligand is correlated with neural crest cell distribution.
- Contrasting patterns of myc and N-myc expression during gastrulation of the mouse embryo.
- N-myc proto-oncogene expression during organogenesis in the developing mouse as revealed by in situ hybridization
- Structure and expression of the murine N-myc gene.
- Dynamic expression pattern of the myc protooncogene in midgestation mouse embryos.
- Cell-type-specific pattern of myc protooncogene expression in developing human embryos.
- Expression of N-myc in teratocarcinoma stem cells and mouse embryos
- Complementary patterns of expression of c-ets 1, c-myb and c-myc in the blood-forming system of the chick embryo.
- The N-myc proto-oncogene and IGF-II growth factor mRNAs are expressed by distinct cells in human fetal kidney and brain
- Alterations in the developmental potential of embryonal carcinoma cells in mixed aggregates of nullipotent and pluripotent cells.
- Lineage and pattern in the developing vertebrate limb.
- Differential expression of myc family genes during murine development
Cited by
- Expression of trkA cDNA in neuroblastomas mediates differentiation in vitro and in vivo
- Expression of cyclin D1, cyclin D2, and N-myc in embryos of the direct developing frog Eleutherodactylus coqui, with a focus on limbs
- Increased progenitor proliferation and apoptotic cell death in the sensory lineage of mice overexpressing N-myc
- N-myc-dependent repression of ndr1, a gene identified by direct subtraction of whole mouse embryo cDNAs between wild type and N-myc mutant.
- Embryonic lethality in mice homozygous for a targeted disruption of the N-myc gene.
- N-myc expression in the embryonic cochlea of the mouse.
- Activities of N-Myc in the developing limb link control of skeletal size with digit separation
- Transition of localization of the N-Myc protein from nucleus to cytoplasm in differentiating neurons.
- Loss of the N-myc oncogene in a patient with a small interstitial deletion of the short arm of chromosome 2.
- Differential Expression of c‐myc and N‐myc during Oral Organogenesis of the Mouse Embryo
- The Expression of the Developmentally Regulated Proto-oncogenePax-3 Is Modulated by N-Myc*
- Long-depth imaging of specific gene expressions in whole-mount mouse embryos with single-photon excitation confocal fluorescence microscopy and FISH.
- Growth inhibition of N1E-115 mouse neuroblastoma cells by c-myc or N-myc antisense oligodeoxynucleotides causes limited differentiation but is not coupled to neurite formation.
- Defective development of the embryonic liver in N-myc-deficient mice.
- Requirement of N‐myc protein down‐regulation for neuronal differentiation in the spinal cord
- Identification of N-myc Regulatory Regions Involved in Embryonic Expression
- Myocardial Mycn is essential for mouse ventricular wall morphogenesis
- Identification of a large Myc-binding protein that contains RCC1-like repeats.
- Site-specific confocal fluorescence imaging of biological microstructures in a turbid medium.
- MYC proteins promote neuronal differentiation by controlling the mode of progenitor cell division
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