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Assaying the Ability of Diffusible Signaling Molecules to Reorient Embryonic Spinal Commissural Axons
Published on: March 9, 2010
Sema3A regulates the timing of target contact by cranial sensory axons
Thomas E Dillon1, Jason Saldanha, Roman Giger
1Department of Biology, Loyola University Chicago, Chicago, Illinois 60626, USA.
Abstract:
The trigeminal ganglion provides the somatosensory innervation for the anterior rat tongue. At early embryonic stages (embryonic day [E] 12-13) pre-tongue explants repel trigeminal axon outgrowth, and this is mediated by Sema3A (Rochlin and Farbman [1998] J. Neurosci. 18:6840-6852; Rochlin et al. [2000] J. Comp. Neurol. 422:579-593). Despite a decrease in repulsion by E14 and older tongue explants, Sema3A mRNA persists throughout the dorsal epithelium through E18, after axons have begun to penetrate papilla epithelium. We investigated the hypothesis that Sema3A continues to act as a repellent and that subpopulations of trigeminal axons that penetrate the epithelium become unresponsive to Sema3A. Sema3A repelled trigeminal axons in vitro regardless of the neurotrophic factor used to stimulate axon outgrowth, but the minimum level of Sema3A required to repel depended on the neurotrophic factor. Thus, in vitro, trigeminal axons are repelled by Sema3A when they would be penetrating the Sema3A-mRNA rich epithelium in vivo. Whereas dorsal epithelium on tongue explants dissected at stages preceding target contact (E15) repelled trigeminal axons in vitro, explants dissected at later stages (E18), after axons would have penetrated the epithelium in vivo, were not repellent. To determine whether Sema3A prevents premature target penetration in vivo, we assessed the timing of target contact by sensory axons in Sema3A-/minus; and +/+ mice. Contact of the epithelium occurs prematurely in Sema3A-/minus; mice, but not penetration. Taken together, our data imply that Sema3A acts as a short-range repellent that regulates the timing of target contact by trigeminal axons.
Insights
Semaphorin 3A (Sema3A) repels trigeminal axons, regulating their contact timing with the developing tongue epithelium. This guidance is crucial for proper sensory innervation during embryonic development.
Area of Science:
- Neuroscience
- Developmental Biology
- Molecular Biology
Background:
- The trigeminal ganglion innervates the anterior rat tongue.
- Sema3A mediates repulsion of trigeminal axons by early embryonic tongue explants.
- Sema3A mRNA persists in the dorsal epithelium through embryonic day 18.
Purpose of the Study:
- Investigate if Sema3A continues to repel trigeminal axons.
- Determine if subpopulations of axons become unresponsive to Sema3A.
- Clarify Sema3A's role in regulating axon-epithelium contact timing.
Main Methods:
- In vitro axon outgrowth assays using trigeminal explants and Sema3A.
- Analysis of tongue explants at different embryonic stages (E15, E18).
- In vivo assessment of sensory axon contact timing in Sema3A knockout mice.
Main Results:
- Sema3A repelled trigeminal axons in vitro, with repulsion levels dependent on neurotrophic factors.
- Tongue explants from E15, but not E18, repelled axons in vitro.
- Epithelial contact occurred prematurely in Sema3A knockout mice, but penetration was not affected.
Conclusions:
- Sema3A acts as a short-range repellent for trigeminal axons.
- Sema3A regulates the timing of initial target contact by sensory axons.
- This mechanism is critical for precise neural innervation of the developing tongue.
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