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Rho/Rho-kinase 信号通路控制特定颅运动神经元亚群的轴突模式形成。

Rho/Rho-kinase signaling pathway controls axon patterning of a specified subset of cranial motor neurons.

机构信息

Department of Molecular Genetics, Institute of Biomedical Sciences, Fukushima Medical University School of Medicine, Fukushima 960-1295, Japan.

出版信息

Eur J Neurosci. 2011 Feb;33(4):612-21. doi: 10.1111/j.1460-9568.2010.07554.x. Epub 2011 Jan 11.

Abstract

Cranial motor neurons, which are divided into somatic motor (SM), branchiomotor (BM) and visceral motor (VM) neurons, form distinct axonal trajectories to innervate their synapse targets. Rho GTPase regulates various neuronal functions through one of the major effector proteins, Rho-kinase. Here, we addressed the in vivo role of the Rho/Rho-kinase signaling pathway in axon patterning of cranial motor neurons. We performed conditional expression of a dominant-negative mutant for RhoA or Rho-kinase in transgenic mice by using the Cre-loxP system to suppress the activity of these molecules in developing cranial motor neurons. Blockade of the Rho/Rho-kinase signaling pathway caused defects in the patterning of SM axons but not in that of BM/VM axons, in which defects were accompanied by reduced muscle innervation and reduced synapse formation by SM neurons. In addition, blockade of the signaling pathway shifted the trajectory of growing SM axons in explant cultures, whereas it did not appear to affect the rate of spontaneous axonal outgrowth. These results indicate that the Rho/Rho-kinase signaling pathway plays an essential role in the axon patterning of cranial SM neurons during development.

摘要

颅运动神经元可分为躯体运动神经元(SM)、鳃运动神经元(BM)和内脏运动神经元(VM),它们形成不同的轴突轨迹以支配其突触靶标。Rho GTPase 通过其主要效应蛋白之一 Rho-kinase 调节各种神经元功能。在这里,我们研究了 Rho/Rho-kinase 信号通路在颅运动神经元轴突模式形成中的体内作用。我们通过 Cre-loxP 系统在转基因小鼠中进行了 RhoA 或 Rho-kinase 的显性失活突变的条件表达,以抑制这些分子在发育中的颅运动神经元中的活性。Rho/Rho-kinase 信号通路的阻断导致 SM 轴突的模式形成缺陷,但 BM/VM 轴突的模式形成不受影响,其中缺陷伴随着肌肉神经支配减少和 SM 神经元的突触形成减少。此外,信号通路的阻断改变了体外培养物中生长的 SM 轴突的轨迹,而似乎不影响自发轴突生长的速度。这些结果表明,Rho/Rho-kinase 信号通路在发育过程中颅 SM 神经元的轴突模式形成中发挥着重要作用。

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