Title: Frizzled3 Controls Axonal Polarity and Intermediate Target Entry during Striatal Pathway Development |
Authors: Morello, Francesca  Prasad, Asheeta  Rehberg, Kati  Vieira de Sa, Renata  Antón Bolaños, Noelia  Leyva-Díaz, Eduardo  Adolfs, Youri Tissir, Fadel  López-Bendito, Guillermina  Pasterkamp, Jeroen R |
Editor: PMC |
Issue Date: 2015-10 |
URI: https://hdl.handle.net/11000/38410 |
Abstract:
The striatum is a large brain nucleus with an important role in the control of movement and emotions. Medium spiny neurons (MSNs) are striatal output neurons forming prominent descending axon tracts that target different brain nuclei. However, how MSN axon tracts in the forebrain develop remains poorly understood. Here, we implicate the Wnt binding receptor Frizzled3 in several uncharacterized aspects of MSN pathway formation [i.e., anterior-posterior guidance of MSN axons in the striatum and their subsequent growth into the globus pallidus (GP), an important (intermediate) target]. In Frizzled3 knock-out mice, MSN axons fail to extend along the anterior-posterior axis of the striatum, and many do not reach the GP. Wnt5a acts as an attractant for MSN axons in vitro, is expressed in a posterior high, anterior low gradient in the striatum, and Wnt5a knock-out mice phenocopy striatal anterior-posterior defects observed in Frizzled3 mutants. This suggests that Wnt5a controls anterior-posterior guidance of MSN axons through Frizzled3. Axons that reach the GP in Frizzled3 knock-out mice fail to enter this structure. Surprisingly, entry of MSN axons into the GP non-cell-autonomously requires Frizzled3, and our data suggest that GP entry may be contingent on the correct positioning of "corridor" guidepost cells for thalamocortical axons by Frizzled3. Together, these data dissect MSN pathway development and reveal (non)cell-autonomous roles for Frizzled3 in MSN axon guidance. Further, they are the first to identify a gene that provides anterior-posterior axon guidance in a large brain nucleus and link Frizzled3 to corridor cell development.
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Keywords/Subjects: Frizzled3 axon guidance corridor cell development striatum |
Type of document: info:eu-repo/semantics/article |
Access rights: info:eu-repo/semantics/openAccess Attribution-NonCommercial-NoDerivatives 4.0 Internacional |
DOI: 10.1523/JNEUROSCI.1840-15.2015. |
Published in: J Neurosci . 2015 Oct 21;35(42):14205-19 |
Appears in Collections: Instituto de Neurociencias
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