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PMID: 25074242 已发表 · epublish 英语

Speed control for neuronal migration in the postnatal brain by Gmip-mediated local inactivation of RhoA.

Nature communications ·第 5 卷 ·2015-11-10

Ota Haruko, Hikita Takao, Sawada Masato, Nishioka Tomoki, Matsumoto Mami, Komura Masayuki, Ohno Akihisa, Kamiya Yukiyo, Miyamoto Takuya, Asai Naoya, Enomoto Atsushi, Takahashi Masahide, Kaibuchi Kozo, Sobue Kazuya, Sawamoto Kazunobu

摘要

Throughout life, new neurons generated in the ventricular-subventricular zone take the long journey to the olfactory bulb. The intracellular mechanisms that precisely control the neurons' migration speed, enabling their well-organized movement, remain unclear. Rho signalling is known to affect the morphology and movement of various cell types, including neurons. Here we identify Gem-interacting protein (Gmip), a RhoA-specific GTPase-activating protein, as a key factor in saltatory neuronal migration. RhoA is activated at the proximal leading process of migrating neurons, where Gmip is also localized and negatively regulates RhoA. Gmip controls the saltatory movement of neurons that regulate their migration speed and 'stop' positions in the olfactory bulb, thereby altering the neural circuitry. This study demonstrates that Gmip serves as a brake for the RhoA-mediated movement of neuronal somata, and highlights the significance of speed control in the well-organized neuronal migration and the maintenance of neuronal circuits in the postnatal brain.

文献信息
期刊
Nature communications
期刊简称
Nat Commun
发表日期
2015-11-10
收录日期
2014-07-30
更新日期
2014-07-30
语言
英语
国家/地区
England
NLM ID
101528555
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