The role of T-cadherin in axonal pathway formation in neocortical circuits
Author(s) -
Yuki Hayano,
Hong Zhao,
Hiroaki Kobayashi,
Kosei Takeuchi,
Shigemi Norioka,
Nobuhiko Yamamoto
Publication year - 2014
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.754
H-Index - 325
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.108290
Subject(s) - biology , efferent , neuroscience , cortex (anatomy) , ectopic expression , axon , cadherin , afferent , netrin , microbiology and biotechnology , anatomy , axon guidance , cell , gene , genetics
Cortical efferent and afferent fibers are arranged in a stereotyped pattern in the intermediate zone (IZ). Here, we studied the mechanism of axonal pathway formation by identifying a molecule that is expressed in a subset of cortical axons in the rat. We found that T-cadherin (T-cad), a member of the cadherin family, is expressed in deep-layer cell axons projecting to subcortical structures, but not in upper layer callosal axons projecting to the contralateral cortex. Ectopic expression of T-cad in upper layer cells induced axons to project toward subcortical structures via the upper part of the IZ. Moreover, the axons of deep-layer cells in which T-cad expression was suppressed by RNAi projected towards the contralateral cortex via an aberrant route. These results suggest that T-cad is involved in axonal pathway formation in the developing cortex.
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