Cytoplasmic NOTCH and membrane-derived β-catenin link cell fate choice to epithelial-mesenchymal transition during myogenesis
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Title
Cytoplasmic NOTCH and membrane-derived β-catenin link cell fate choice to epithelial-mesenchymal transition during myogenesis
Authors
Keywords
-
Journal
eLife
Volume 5, Issue -, Pages -
Publisher
eLife Sciences Organisation, Ltd.
Online
2016-05-24
DOI
10.7554/elife.14847
References
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Related references
Note: Only part of the references are listed.- Migrating cells mediate long-range WNT signaling
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- Wnt/β-Catenin Signaling and Disease
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- NIH Image to ImageJ: 25 years of image analysis
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- The Notch signalling system: recent insights into the complexity of a conserved pathway
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- Non-canonical Notch signaling: emerging role and mechanism
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- Dynamics of adherens junctions in epithelial establishment, maintenance, and remodeling
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- Neural crest regulates myogenesis through the transient activation of NOTCH
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- Wnt Signaling Requires Sequestration of Glycogen Synthase Kinase 3 inside Multivesicular Endosomes
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- The timing of emergence of muscle progenitors is controlled by an FGF/ERK/SNAIL1 pathway
- (2009) Marie-Claire Delfini et al. DEVELOPMENTAL BIOLOGY
- Wnt/Lef1 signaling acts via Pitx2 to regulate somite myogenesis
- (2009) Muhammad Abu-Elmagd et al. DEVELOPMENTAL BIOLOGY
- Notch Signaling: The Core Pathway and Its Posttranslational Regulation
- (2009) Mark E. Fortini DEVELOPMENTAL CELL
- Real-time observation of Wnt β-catenin signaling in the chick embryo
- (2009) Anne C. Rios et al. DEVELOPMENTAL DYNAMICS
- Identification of -catenin as a target of the intracellular tyrosine kinase PTK6
- (2009) H. L. Palka-Hamblin et al. JOURNAL OF CELL SCIENCE
- Myostatin promotes the terminal differentiation of embryonic muscle progenitors
- (2008) M. Manceau et al. GENES & DEVELOPMENT
- WNT11 acts as a directional cue to organize the elongation of early muscle fibres
- (2008) Jérôme Gros et al. NATURE
- Molecular separation of two signaling pathways for the receptor, Notch
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