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与神经节隆起的连续性调节新皮质假复层脑室上皮中的动核间迁移。

Continuity with ganglionic eminence modulates interkinetic nuclear migration in the neocortical pseudostratified ventricular epithelium.

作者信息

Miyama S, Takahashi T, Goto T, Bhide P G, Caviness V S

机构信息

Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, USA.

出版信息

Exp Neurol. 2001 Jun;169(2):486-95. doi: 10.1006/exnr.2001.7676.

Abstract

Cells of the pseudostratified ventricular epithelium (PVE) undergo interkinetic nuclear migration whereby position of cell soma with nucleus is systematically dependent upon cell cycle phase. We examined if the interkinetic nuclear migration in the neopallial PVE is influenced by tissue continuity with the ganglionic eminence (GE) of the basal forebrain in explants from embryonic day 13 mice. We found that when continuity between the neopallial wall and the GE is intact, some neopallial PVE cells discontinue interkinetic nuclear migration following S-phase and upon entry into G2-phase. The somata and nuclei of those cells shift outward from the S-phase zone toward the subventricular and the intermediate zones. The outward migration of post-S-phase cells is observed only in the lateral region of the cerebral wall, which is closely adjacent to the GE, but not in the medial region, and only when tissue continuity with GE is maintained. We suggest that the outward moving PVE cells seed the secondary proliferative population (SPP) and that exit of the SPP seeding cells occurs in G2-phase. The phenomenon recapitulates similar migratory behavior of neopallial PVE cells in vivo and appears to represent a "choice" between two opposing options available to post-S-phase cells of the PVE. The choice appears to be imposed by mechanisms dependent upon continuity with the GE. We conclude that GE, and/or other adjacent basal forebrain structures, modulates interkinetic nuclear migration in the neopallial PVE.

摘要

假复层脑室上皮(PVE)细胞经历核间运动迁移,即细胞体与细胞核的位置系统地依赖于细胞周期阶段。我们研究了胚胎第13天小鼠外植体中新皮质PVE的核间运动迁移是否受与基底前脑神经节隆起(GE)的组织连续性影响。我们发现,当新皮质壁与GE之间的连续性完整时,一些新皮质PVE细胞在S期后进入G2期时停止核间运动迁移。这些细胞的细胞体和细胞核从S期区域向外转移至脑室下区和中间区。S期后细胞的向外迁移仅在紧邻GE的脑壁外侧区域观察到,而在内侧区域未观察到,且仅在与GE的组织连续性得以维持时出现。我们认为向外迁移的PVE细胞为次级增殖群体(SPP)提供种子,且SPP种子细胞在G2期退出。该现象重现了新皮质PVE细胞在体内的类似迁移行为,似乎代表了PVE S期后细胞可选择的两种相反选项之间的“抉择”。这种抉择似乎由依赖于与GE连续性的机制所决定。我们得出结论,GE和/或其他相邻的基底前脑结构调节新皮质PVE中的核间运动迁移。

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