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Eph酪氨酸激酶受体EphA4是皮质脊髓束拓扑映射所必需的。

Eph tyrosine kinase receptor EphA4 is required for the topographic mapping of the corticospinal tract.

作者信息

Canty Alison J, Greferath Ursula, Turnley Ann M, Murphy Mark

机构信息

Department of Anatomy and Cell Biology and Centre for Neuroscience, University of Melbourne, Victoria 3010, Australia.

出版信息

Proc Natl Acad Sci U S A. 2006 Oct 17;103(42):15629-34. doi: 10.1073/pnas.0607350103. Epub 2006 Oct 9.

Abstract

Fine movement in the body is controlled by the motor cortex, which signals in a topographically specific manner to neurons in the spinal cord by means of the corticospinal tract (CST). How the correct topography of the CST is established is unknown. To investigate the possibility that the Eph tyrosine kinase receptor EphA4 is involved in this process, we have traced CST axons in mice in which the EphA4 gene has been deleted. The forelimb subpopulation of CST axons is unaffected in the EphA4-/- mice, but the hindlimb subpopulation branches too early within the cord, both temporally and spatially. EphA4 shows a dynamic expression pattern in the environment of the developing CST in the spinal cord: high at the time of forelimb branching and down-regulated before hindlimb branching. To examine whether the fore- and hindlimb subpopulations of CST axons respond differently to EphA4 in their environment, neurons from fore- and hindlimb motor cortex were cultured on a substrate containing EphA4. Neurons from the hindlimb cortex showed reduced branching on the EphA4 substrate compared with their forelimb counterparts. Neurons from the hindlimb cortex express ephrinA5, a high-affinity ligand for EphA4, at higher levels compared with forelimb cortex neurons, and this expression is down-regulated before hindlimb branching. Together, these findings suggest that EphA4 regulates topographic mapping of the CST by controlling the branching of CST axons in the spinal cord.

摘要

身体的精细运动由运动皮层控制,运动皮层通过皮质脊髓束(CST)以拓扑特异性的方式向脊髓中的神经元发出信号。CST正确的拓扑结构是如何建立的尚不清楚。为了研究Eph酪氨酸激酶受体EphA4是否参与这一过程,我们追踪了EphA4基因已被敲除的小鼠的CST轴突。CST轴突的前肢亚群在EphA4基因敲除小鼠中未受影响,但后肢亚群在脊髓内过早分支,在时间和空间上均如此。EphA4在脊髓中发育中的CST环境中呈现动态表达模式:在前肢分支时表达高,在后肢分支前下调。为了检查CST轴突的前肢和后肢亚群在其环境中对EphA4的反应是否不同,将前肢和后肢运动皮层的神经元培养在含有EphA4的底物上。与前肢对应物相比,后肢皮层的神经元在EphA4底物上的分支减少。与前肢皮层神经元相比,后肢皮层的神经元更高水平地表达ephrinA5,ephrinA5是EphA4的高亲和力配体,并且这种表达在后肢分支前下调。这些发现共同表明,EphA4通过控制脊髓中CST轴突的分支来调节CST的拓扑映射。

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