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Generation of reelin-positive marginal zone cells from the caudomedial wall of telencephalic vesicles.
Takiguchi-Hayashi, Keiko; Sekiguchi, Mariko; Ashigaki, Shizuko; Takamatsu, Masako; Hasegawa, Hiroshi; Suzuki-Migishima, Rika; Yokoyama, Minesuke; Nakanishi, Shigetada; Tanabe, Yasuto.
Affiliation
  • Takiguchi-Hayashi K; Translational Research Department, Molecular Bio-Medicine Unit, Japan Science and Technology, Mitsubishi Kagaku Institute of Life Sciences, Machida, Tokyo, 194-8511, Japan.
J Neurosci ; 24(9): 2286-95, 2004 Mar 03.
Article in En | MEDLINE | ID: mdl-14999079
ABSTRACT
An early and fundamental step of the laminar organization of developing neocortex is controlled by the developmental programs that critically depend on the activities of reelin-positive cells in the marginal zone. However, the ontogeny of reelin-positive cells remained elusive. To gain insights into the spatial and temporal regulation of reelin-positive marginal zone cell development, we used a transgenic mouse line in which we defined the green fluorescent protein (GFP) transgene as a novel reliable molecular marker of reelin-positive marginal zone cells from the early stages of their development. We further used exo utero electroporation-mediated gene transfer that allows us to mark progenitor cells and monitor the descendants in the telencephalon in vivo. We show here the generation of reelin-positive marginal zone cells from the caudomedial wall of telencephalic vesicles, including the cortical hem, where the prominent expression of GFP is initially detected. These neurons tangentially migrate at the cortical marginal zone and are distributed throughout the entire neocortex in a caudomedial-high to rostrolateral-low gradient during the dynamic developmental period of corticogenesis. Therefore, our findings on reelin-positive marginal zone cells, in addition to the cortical interneurons, add to the emerging view that the neocortex consists of neuronal subtypes that originate from a focal source extrinsic to the neocortex, migrate tangentially into the neocortex, and thereby underlie neural organization of the neocortex.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Telencephalon / Cell Adhesion Molecules, Neuronal / Cell Movement / Extracellular Matrix Proteins / Neurons Limits: Animals Language: En Journal: J Neurosci Year: 2004 Type: Article Affiliation country: Japan

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Telencephalon / Cell Adhesion Molecules, Neuronal / Cell Movement / Extracellular Matrix Proteins / Neurons Limits: Animals Language: En Journal: J Neurosci Year: 2004 Type: Article Affiliation country: Japan