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UNC5C 神经导向因子受体调控小鼠后脑神经轴突的背侧导向。

The UNC5C netrin receptor regulates dorsal guidance of mouse hindbrain axons.

机构信息

Howard Hughes Medical Institute and The Jackson Laboratory, Bar Harbor, Maine 04609, USA.

出版信息

J Neurosci. 2011 Feb 9;31(6):2167-79. doi: 10.1523/JNEUROSCI.5254-10.2011.

Abstract

The cerebellum receives its input from multiple precerebellar nuclei located in the brainstem and sends processed information to other brain structures via the deep cerebellar neurons. Guidance molecules that regulate the complex migrations of precerebellar neurons and the initial guidance of their leading processes have been identified. However, the molecules necessary for dorsal guidance of precerebellar axons to the developing cerebellum or for guidance of decussating axons of the deep nuclei are not known. To determine whether Unc5c plays a role in the dorsal guidance of precerebellar and deep cerebellar axons, we studied axonal trajectories of these neurons in Unc5c(-/-) mice. Our results show that Unc5c is expressed broadly in the precerebellar and deep cerebellar neurons. Unc5c deletion disrupted long-range dorsal guidance of inferior olivary and pontine axons after crossing the midline. In addition, dorsal guidance of the axons from the medial deep cerebellar and external cuneate neurons was affected in Unc5c(-/-) mice, as were anterior migrations of pontine neurons. Coincident with the guidance defects of their axons, degeneration of neurons in the external cuneate nucleus and subdivisions of the inferior olivary nucleus was observed in Unc5c(-/-) mice. Lastly, transgenic expression of Unc5c in deep neurons and pontine neurons by the Atoh1 promoter rescued defects of the medial deep cerebellar and pontine axons observed in Unc5c(-/-) embryos, demonstrating that Unc5c acts cell autonomously in the guidance of these axons. Our results suggest that Unc5c plays a broad role in dorsal guidance of axons in the developing hindbrain.

摘要

小脑从位于脑干中的多个小脑前核接收输入,并通过深部小脑神经元将处理后的信息发送到其他大脑结构。已经鉴定出调节小脑前神经元复杂迁移和其前导过程初步引导的指导分子。然而,对于小脑前轴突向发育中的小脑的背侧引导,或者对于深部核的交叉轴突的引导所需的分子尚不清楚。为了确定 Unc5c 是否在小脑前和深部小脑轴突的背侧引导中发挥作用,我们在 Unc5c(-/-) 小鼠中研究了这些神经元的轴突轨迹。我们的结果表明,Unc5c 在小脑前和深部小脑神经元中广泛表达。Unc5c 缺失破坏了中线交叉后下橄榄核和脑桥轴突的长程背侧引导。此外,Unc5c(-/-) 小鼠中内侧深部小脑和外楔状神经元的轴突背侧引导受到影响,桥脑神经元的前向迁移也受到影响。与它们轴突的引导缺陷相一致,在 Unc5c(-/-) 小鼠中观察到外楔状核和下橄榄核亚区神经元的变性。最后,通过 Atoh1 启动子在深部神经元和桥脑神经元中转基因表达 Unc5c 挽救了 Unc5c(-/-) 胚胎中观察到的内侧深部小脑和桥脑轴突的缺陷,表明 Unc5c 在这些轴突的引导中发挥自主作用。我们的结果表明,Unc5c 在发育中的后脑的轴突背侧引导中发挥广泛作用。

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