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Updated: Jul 18, 2026

Whole-mount Imaging of Mouse Embryo Sensory Axon Projections
Published on: December 9, 2014
Impaired neural development caused by inducible expression of Axin in transgenic mice
Hsiao-Man Ivy Yu1, Bo Liu, Frank Costantini
1Department of Biomedical Genetics, Center for Oral Biology, Abs Institute of Biomedical Sciences, School of Medicine and Dentistry, University of Rochester, 601 Elmwood Avenue, Box 611, Rochester, NY 14642, USA.
Abstract:
Ablations of the Axin family genes demonstrated that they modulate Wnt signaling in key processes of mammalian development. The ubiquitously expressed Axin1 plays an important role in formation of the embryonic neural axis, while Axin2 is essential for craniofacial skeletogenesis. Although Axin2 is also highly expressed during early neural development, including the neural tube and neural crest, it is not essential for these processes, apparently due to functional redundancy with Axin1. To further investigate the role of Wnt signaling during early neural development, and its potential regulation by Axins, we developed a mouse model for conditional gene activation in the Axin2-expressing domains. We show that gene expression can be successfully targeted to the Axin2-expressing cells in a spatially and temporally specific fashion. High levels of Axin in this domain induce a region-specific effect on the patterning of neural tube. In the mutant embryos, only the development of midbrain is severely impaired even though the transgene is expressed throughout the neural tube. Axin apparently regulates beta-catenin in coordinating cell cycle progression, cell adhesion and survival of neuroepithelial precursors during development of ventricles. Our data support the conclusion that the development of embryonic neural axis is highly sensitive to the level of Wnt signaling.
Insights
Axin proteins regulate Wnt signaling crucial for mammalian development. Overactivating Axin in specific neural domains impairs midbrain development, highlighting Wnt signaling
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Axin family genes (Axin1, Axin2) modulate Wnt signaling in mammalian development.
- Axin1 is vital for embryonic neural axis formation; Axin2 is essential for craniofacial skeletogenesis.
- Axin2's role in early neural development is masked by functional redundancy with Axin1.
Purpose of the Study:
- Investigate Wnt signaling's role in early neural development.
- Explore regulation by Axin proteins.
- Develop a conditional gene activation mouse model in Axin2-expressing domains.
Main Methods:
- Generated a conditional gene activation mouse model targeting Axin2-expressing domains.
- Achieved spatiotemporal gene expression targeting.
- Analyzed effects of high Axin levels on neural tube patterning.
Main Results:
- Successful spatial and temporal gene expression targeting in Axin2 domains.
- High Axin levels induced region-specific neural tube patterning defects.
- Midbrain development was severely impaired in mutant embryos.
- Axin regulates beta-catenin, affecting cell cycle, adhesion, and survival of neuroepithelial precursors.
Conclusions:
- Embryonic neural axis development is highly sensitive to Wnt signaling levels.
- Axin proteins play a critical role in coordinating neurodevelopmental processes.
- Conditional gene activation is a viable method for studying gene function in specific developmental domains.

