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EphA4表达异常会改变听觉脑干中的音频拓扑投射。

EphA4 misexpression alters tonotopic projections in the auditory brainstem.

作者信息

Huffman Kelly J, Cramer Karina S

机构信息

Department of Psychology, University of California, Riverside, California 92521, USA.

出版信息

Dev Neurobiol. 2007 Oct;67(12):1655-68. doi: 10.1002/dneu.20535.

Abstract

Auditory pathways contain orderly representations of frequency selectivity, which begin at the cochlea and are transmitted to the brainstem via topographically ordered axonal pathways. The mechanisms that establish these tonotopic maps are not known. Eph receptor tyrosine kinases and their ligands, the ephrins, have a demonstrated role in establishing topographic projections elsewhere in the brain, including the visual pathway. Here, we have examined the function of these proteins in the formation of auditory frequency maps. In birds, the first central auditory nucleus, n. magnocellularis (NM), projects tonotopically to n. laminaris (NL) on both sides of the brain. We previously showed that the Eph receptor EphA4 is expressed in a tonotopic gradient in the chick NL, with higher frequency regions showing greater expression than lower frequency regions. Here we misexpressed EphA4 in the developing auditory brainstem from embryonic day 2 (E2) through E10, when NM axons make synaptic contact with NL. We then evaluated topography along the frequency axis using both anterograde and retrograde labeling in both the ipsilateral and contralateral NM-NL pathways. We found that after misexpression, NM regions project to a significantly broader proportion of NL than in control embryos, and that both the ipsilateral map and the contralateral map show this increased divergence. These results support a role for EphA4 in establishing tonotopic projections in the auditory system, and further suggest a general role for Eph family proteins in establishing topographic maps in the nervous system.

摘要

听觉通路包含频率选择性的有序表征,其始于耳蜗,并通过拓扑有序的轴突通路传递至脑干。建立这些音频拓扑图的机制尚不清楚。Eph受体酪氨酸激酶及其配体—— Ephrin在大脑其他部位(包括视觉通路)建立拓扑投射中已被证明发挥作用。在此,我们研究了这些蛋白在听觉频率图形成中的功能。在鸟类中,第一个中枢听觉核,即巨细胞核(NM),以音频拓扑方式投射到脑两侧的层状核(NL)。我们先前表明,Eph受体EphA4在鸡NL中呈音频拓扑梯度表达,高频区域的表达高于低频区域。在此,我们在胚胎发育第2天(E2)至E10期间(此时NM轴突与NL形成突触接触),在发育中的听觉脑干中错误表达EphA4。然后,我们使用顺行和逆行标记,在同侧和对侧的NM - NL通路中沿频率轴评估拓扑结构。我们发现,错误表达后,NM区域投射到NL的比例明显比对照胚胎更宽,并且同侧图和对侧图均显示出这种增加的发散。这些结果支持EphA4在听觉系统中建立音频拓扑投射中的作用,并进一步表明Eph家族蛋白在神经系统中建立拓扑图中具有普遍作用。

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