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Specificity and plasticity of thalamocortical connections in Sema6A mutant mice.


ABSTRACT: The establishment of connectivity between specific thalamic nuclei and cortical areas involves a dynamic interplay between the guidance of thalamocortical axons and the elaboration of cortical areas in response to appropriate innervation. We show here that Sema6A mutants provide a unique model to test current ideas on the interactions between subcortical and cortical guidance mechanisms and cortical regionalization. In these mutants, axons from the dorsal lateral geniculate nucleus (dLGN) are misrouted in the ventral telencephalon. This leads to invasion of presumptive visual cortex by somatosensory thalamic axons at embryonic stages. Remarkably, the misrouted dLGN axons are able to find their way to the visual cortex via alternate routes at postnatal stages and reestablish a normal pattern of thalamocortical connectivity. These findings emphasize the importance and specificity of cortical cues in establishing thalamocortical connectivity and the spectacular capacity of the early postnatal cortex for remapping initial sensory representations.

SUBMITTER: Little GE 

PROVIDER: S-EPMC2672616 | biostudies-literature | 2009 Apr

REPOSITORIES: biostudies-literature

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Specificity and plasticity of thalamocortical connections in Sema6A mutant mice.

Little Graham E GE   López-Bendito Guillermina G   Rünker Annette E AE   García Noelia N   Piñon Maria C MC   Chédotal Alain A   Molnár Zoltán Z   Mitchell Kevin J KJ  

PLoS biology 20090401 4


The establishment of connectivity between specific thalamic nuclei and cortical areas involves a dynamic interplay between the guidance of thalamocortical axons and the elaboration of cortical areas in response to appropriate innervation. We show here that Sema6A mutants provide a unique model to test current ideas on the interactions between subcortical and cortical guidance mechanisms and cortical regionalization. In these mutants, axons from the dorsal lateral geniculate nucleus (dLGN) are mi  ...[more]

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