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Rac参与皮层祖细胞的核内运动迁移。

Rac is involved in the interkinetic nuclear migration of cortical progenitor cells.

作者信息

Minobe Sayaka, Sakakibara Akira, Ohdachi Tomoko, Kanda Rieko, Kimura Miyako, Nakatani Sayaka, Tadokoro Ryosuke, Ochiai Wataru, Nishizawa Yuji, Mizoguchi Akira, Kawauchi Takeshi, Miyata Takaki

机构信息

Department of Anatomy and Cell Biology, Nagoya University Graduate School of Medicine, Aichi, Japan.

出版信息

Neurosci Res. 2009 Apr;63(4):294-301. doi: 10.1016/j.neures.2009.01.006.

Abstract

The small GTPase Rac regulates neuronal behavior, but whether it also functions in neural progenitor cells has not yet been explored. Here we report that Rac contributes to the regulation of nuclear migration in neocortical progenitor cells. Rac1 is expressed by progenitor cells in a unique spatiotemporal pattern. Cross-sectional immunohistochemical examination revealed intense Rac1 immunoreactivity at the ventricular surface. Similar staining patterns were obtained by immunofluorescence for a Rac-activator, Tiam1, and by reactions to detect the GTP-bound (active) form of Rac. En face inspection of the ventricular surface revealed that apical Rac1 localization was most frequent in M-phase cells, and the endfeet of cells in other cell cycle phases also showed apical Rac1 distribution at lower frequencies. To ask whether progenitor cell behavior prior to and during M phase is Rac-dependent, we monitored individual DiI-labeled progenitor cells live in the presence of a Rac inhibitor, NSC23766. We observed significantly retarded adventricular nuclear migration, as well as cytokinesis failures. Similar inhibitory effects were obtained by forced expression of a dominant-negative Rac1. These results suggest that Rac may play a role in interkinetic nuclear migration in the developing mouse brain.

摘要

小GTP酶Rac调节神经元行为,但它是否也在神经祖细胞中发挥作用尚未得到探索。在此我们报告,Rac有助于调节新皮质祖细胞中的核迁移。Rac1由祖细胞以独特的时空模式表达。横断面免疫组织化学检查显示,在脑室表面有强烈的Rac1免疫反应性。通过对Rac激活剂Tiam1进行免疫荧光检测以及对检测Rac的GTP结合(活性)形式的反应,也获得了类似的染色模式。对脑室表面进行正面观察发现,顶端Rac1定位在M期细胞中最为常见,其他细胞周期阶段的细胞终足也较低频率地显示顶端Rac1分布。为了探究M期之前和期间祖细胞行为是否依赖Rac,我们在存在Rac抑制剂NSC23766的情况下对单个DiI标记的祖细胞进行实时监测。我们观察到室周核迁移明显延迟,以及胞质分裂失败。通过强制表达显性负性Rac1也获得了类似的抑制效果。这些结果表明,Rac可能在发育中的小鼠大脑的动核迁移中发挥作用。

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