Transient and restricted expression during mouse embryogenesis of Dll1, a murine gene closely related to Drosophila Delta.
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Summary
The results support the idea that Delta- and Notch-like proteins are involved in cell-to-cell communication in mammalian embryos and suggest a role for these proteins in cellular interactions underlying somitogenesis and development of the nervous system.
- Type
- article
- Published
- 1995-08-01
- Cited by
- 498
- References
- 66
- OpenAlex
- https://openalex.org/W1905183026
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14450347
Keywords
Biology, Gene, Drosophila (subgenus), Embryogenesis, Genetics
References
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- Where is the mouse
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- A lethal mutant (tw18) in the house mouse showing partial duplications
- The microenvironment created by grafting rostral half-somites is mitogenic for neural crest cells.
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- Specific EGF repeats of Notch mediate interactions with Delta and Serrate: implications for Notch as a multifunctional receptor.
- Segmentation in the vertebrate nervous system
- The T-locus of the mouse
- Single amino acid substitutions in EGF-like elements of Notch and Delta modify Drosophila development and affect cell adhesion in vitro.
- Transient translational silencing by reversible mRNA deadenylation.
Cited by
- Somitogenesis and fibronectin: united by tension?
- The Notch ligand, Jagged-1, influences the development of primitive hematopoietic precursor cells.
- Complementary and combinatorial patterns of Notch gene family expression during early mouse development.
- Notch signalling via RBP‐J promotes myeloid differentiation
- Development of chemical tools for studying two unusual forms of protein O-glycosylation
- Defective somite patterning in mouse embryos with reduced levels of Tbx6
- Regulation of Tbx6 expression by Notch signaling
- Impairment of Thymocyte Development by Dominant-Negative Kuzbanian (ADAM-10) Is Rescued by the Notch Ligand, Delta-11
- VITO-2, a new SID domain protein, is expressed in the myogenic lineage during early mouse embryonic development.
- Mouse mutations disrupting somitogenesis and vertebral patterning.
- RhoV, a Potential Notch Target Gene in Murine Skin, Does not Play an Essential Role in Epidermis Development and Homeostasis
- Zeb1-Hdac2-eNOS circuitry identifies early cardiovascular precursors in naive mouse embryonic stem cells
- Notch receptors, partners and regulators: from conserved domains to powerful functions.
- Role of Delta-like-3 in mammalian somitogenesis and vertebral column formation.
- Orienting axon growth: spinal nerve segmentation and surround-repulsion.
- BHLH proteins and their role in somitogenesis.
- Monocytes express high amounts of Notch and undergo cytokine specific apoptosis following interaction with the Notch ligand, Delta-1.
- Straightening out the mechanisms of axial elongation using mouse mutant analysis
- Notch signaling : From receptor cleavage to chromatin remodeling
- Expression of proneural and neurogenic genes in the embryonic mammalian vestibular system
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