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EphA4基因缺陷小鼠中皮质脊髓投射的发育与重组

Development and reorganization of corticospinal projections in EphA4 deficient mice.

作者信息

Coonan J R, Greferath U, Messenger J, Hartley L, Murphy M, Boyd A W, Dottori M, Galea M P, Bartlett P F

机构信息

The Walter and Eliza Hall Institute of Medical Research, Royal Parade, Parkville, Victoria 3050, Australia.

出版信息

J Comp Neurol. 2001 Jul 23;436(2):248-62.

Abstract

The Eph family of receptor tyrosine kinases and their ligands, the ephrins, are important regulators of axon guidance and cell migration in the developing nervous system. Inactivation of the EphA4 gene results in axon guidance defects of the corticospinal tract, a major descending motor pathway that originates in the cortex and terminates at all levels of the spinal cord. In this investigation, we report that although the initial development of the corticospinal projection is normal through the cortex, internal capsule, cerebral peduncle, and medulla in the brain of EphA4 deficient animals, corticospinal axons exhibit gross abnormalities when they enter the gray matter of the spinal cord. Notably, many corticospinal axons fail to remain confined to one side of the spinal cord during development and instead, aberrantly project across the midline, terminating ipsilateral to their cells of origin. Given the possible repulsive interactions between EphA4 and one of its ligands, ephrinB3, this defect could be consistent with a loss of responsiveness by corticospinal axons to ephrinB3 that is expressed at the spinal cord midline. Furthermore, we show that EphA4 deficient animals exhibit ventral displacement of the mature corticospinal termination pattern, suggesting that developing corticospinal axons, which may also express ephrinB3, fail to be repelled from areas of high EphA4 expression in the intermediate zone of the normal spinal cord. Taken together, these results suggest that the dual expression of EphA4 on corticospinal axons and also within the surrounding gray matter is very important for the correct development and termination of the corticospinal projection within the spinal cord.

摘要

受体酪氨酸激酶的Eph家族及其配体ephrins是发育中的神经系统中轴突导向和细胞迁移的重要调节因子。EphA4基因的失活导致皮质脊髓束的轴突导向缺陷,皮质脊髓束是一条主要的下行运动通路,起源于皮质,终止于脊髓的各个水平。在本研究中,我们报告,尽管在EphA4基因缺陷动物的大脑中,皮质脊髓投射的初始发育在穿过皮质、内囊、大脑脚和延髓时是正常的,但皮质脊髓轴突在进入脊髓灰质时表现出明显的异常。值得注意的是,许多皮质脊髓轴突在发育过程中未能局限于脊髓的一侧,而是异常地越过中线投射,在其起源细胞的同侧终止。鉴于EphA4与其配体之一ephrinB3之间可能存在排斥相互作用,这种缺陷可能与皮质脊髓轴突对在脊髓中线表达的ephrinB3失去反应性一致。此外,我们表明,EphA基因缺陷动物表现出成熟皮质脊髓终末模式的腹侧移位,这表明发育中的皮质脊髓轴突(其也可能表达ephrinB3)未能被正常脊髓中间带中高EphA4表达区域排斥。综上所述,这些结果表明,EphA4在皮质脊髓轴突上以及周围灰质中的双重表达对于脊髓内皮质脊髓投射的正确发育和终止非常重要。

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