Lee Ramee, Petros Timothy J, Mason Carol A
Department of Pathology and Cell Biology, Columbia University, College of Physicians and Surgeons, New York, New York 10032, USA.
J Neurosci. 2008 Jun 4;28(23):5910-9. doi: 10.1523/JNEUROSCI.0632-08.2008.
The navigation of retinal axons to ipsilateral and contralateral targets in the brain depends on the decision to cross or avoid the midline at the optic chiasm, a critical guidance maneuver that establishes the binocular visual pathway. Previous work has identified a specific guidance receptor, EphB1, that mediates the repulsion of uncrossed axons away from its ligand, ephrinB2, at the optic chiasm midline (Williams et al., 2003), and a transcription factor Zic2, that, like EphB1, is required for formation of the ipsilateral retinal projection (Herrera et al., 2003). Although the reported similarities in localization implicated that Zic2 regulates EphB1 (Herrera et al., 2003; Williams et al., 2003; Pak et al., 2004), whether Zic2 drives expression of EphB1 protein has not been elucidated. Here we show that EphB1 protein is expressed in the growth cones of axons from ventrotemporal (VT) retina that project ipsilaterally and that repulsion by ephrinB2 is determined by the presence of this receptor on growth cones. Moreover, ectopic delivery of Zic2 into explants from non-VT retina induces expression of EphB1 mRNA and protein. The upregulated EphB1 receptor protein is localized to growth cones and is functional, because it is sufficient to change retinal ganglion cell axon behavior from extension onto, to avoidance of, ephrinB2 substrates. Our results demonstrate that Zic2 upregulates EphB1 expression and define a link between a transcription factor and expression of a guidance receptor protein essential for axon guidance at the vertebrate midline.
视网膜轴突在大脑中向同侧和对侧靶标的导航取决于在视交叉处穿过或避开中线的决定,这是一种关键的导向机制,它建立了双眼视觉通路。先前的研究已经确定了一种特定的导向受体EphB1,它在视交叉中线介导未交叉轴突对其配体ephrinB2的排斥(Williams等人,2003年),以及一种转录因子Zic2,与EphB1一样,它是同侧视网膜投射形成所必需的(Herrera等人,2003年)。尽管报道的定位相似性表明Zic2调节EphB1(Herrera等人,2003年;Williams等人,2003年;Pak等人,2004年),但Zic2是否驱动EphB1蛋白的表达尚未阐明。在这里,我们表明EphB1蛋白在从颞腹侧(VT)视网膜向同侧投射的轴突的生长锥中表达,并且ephrinB2的排斥作用由生长锥上该受体的存在决定。此外,将Zic2异位递送到非VT视网膜的外植体中可诱导EphB1 mRNA和蛋白的表达。上调的EphB1受体蛋白定位于生长锥且具有功能,因为它足以改变视网膜神经节细胞轴突的行为,使其从延伸到ephrinB2底物上转变为避开该底物。我们的结果表明Zic2上调EphB1的表达,并确定了转录因子与脊椎动物中线轴突导向所必需的导向受体蛋白表达之间的联系。