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Publication : L1 and CHL1 Cooperate in Thalamocortical Axon Targeting.

First Author  Demyanenko GP Year  2011
Journal  Cereb Cortex Volume  21
Issue  2 Pages  401-12
PubMed ID  20576928 Mgi Jnum  J:171029
Mgi Id  MGI:4948215 Doi  10.1093/cercor/bhq115
Citation  Demyanenko GP, et al. (2011) L1 and CHL1 Cooperate in Thalamocortical Axon Targeting. Cereb Cortex 21(2):401-12
abstractText  Neural cell adhesion molecule close homolog of L1 (CHL1) is a regulator of topographic targeting of thalamic axons to the somatosensory cortex (S1) but little is known about its cooperation with other L1 class molecules. To investigate this, CHL1(-/-)/L1(-/y) double mutant mice were generated and analyzed for thalamocortical axon topography. Double mutants exhibited a striking posterior shift of axons from motor thalamic nuclei to the visual cortex (V1), which was not observed in single mutants. In wild-type (WT) embryos, L1 and CHL1 were coexpressed in the dorsal thalamus (DT) and on fibers along the thalamocortical projection in the ventral telencephalon and cortex. L1 and CHL1 colocalized on growth cones and neurites of cortical and thalamic neurons in culture. Growth cone collapse assays with WT and mutant neurons demonstrated a requirement for L1 and CHL1 in repellent responses to EphrinA5, a guidance factor for thalamic axons. L1 coimmunoprecipitated with the principal EphrinA5 receptors expressed in the DT (EphA3, EphA4, and EphA7), whereas CHL1 associated selectively with EphA7. These results implicate a novel mechanism in which L1 and CHL1 interact with individual EphA receptors and cooperate to guide subpopulations of thalamic axons to distinct neocortical areas essential for thalamocortical connectivity.
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