| Literature DB >> 18434520 |
Keisuke Ito1, Takahiko Kawasaki, Seiji Takashima, Ikuo Matsuda, Atsu Aiba, Tatsumi Hirata.
Abstract
Ventral tangential migration of neurons is the most prominent mode of neuronal translocation during earliest neurogenesis in the mouse telencephalon. A typical example of the neurons that adopt this migration mode is guidepost neurons in the lateral olfactory tract designated as lot cells. These neurons are generated from the neocortical neuroepithelium and migrate tangentially down to the ventral edge of the neocortex abutting the ganglionic eminence, on which the future lateral olfactory tract develops. We show here that this migration stream is repelled by a secreted axon guidance molecule, semaphorin 3F through interaction with its specific receptor, neuropilin-2. Accordingly, in mutant mice for semaphorin 3F or neuropilin-2, lot cells ectopically penetrated into the deep brain domain, which normally expresses semaphorin 3F. These results reveal that semaphorin 3F is an important regulator of the ventral tangential migration stream, confining the migrating neurons on the telencephalon surface by repelling from the deeper domain.Entities:
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Year: 2008 PMID: 18434520 PMCID: PMC6670952 DOI: 10.1523/JNEUROSCI.0372-08.2008
Source DB: PubMed Journal: J Neurosci ISSN: 0270-6474 Impact factor: 6.167