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视网膜轴突生长锥将EphB细胞外结构域作为轴突导向抑制性信号作出反应。

Retinal axon growth cones respond to EphB extracellular domains as inhibitory axon guidance cues.

作者信息

Birgbauer E, Oster S F, Severin C G, Sretavan D W

机构信息

Department of Ophthalmology and Physiology, University of California, San Francisco, San Francisco, CA 94143, USA.

出版信息

Development. 2001 Aug;128(15):3041-8. doi: 10.1242/dev.128.15.3041.

Abstract

Axon pathfinding relies on cellular signaling mediated by growth cone receptor proteins responding to ligands, or guidance cues, in the environment. Eph proteins are a family of receptor tyrosine kinases that govern axon pathway development, including retinal axon projections to CNS targets. Recent examination of EphB mutant mice, however, has shown that axon pathfinding within the retina to the optic disc is dependent on EphB receptors, but independent of their kinase activity. Here we show a function for EphB1, B2 and B3 receptor extracellular domains (ECDs) in inhibiting mouse retinal axons when presented either as substratum-bound proteins or as soluble proteins directly applied to growth cones via micropipettes. In substratum choice assays, retinal axons tended to avoid EphB-ECDs, while time-lapse microscopy showed that exposure to soluble EphB-ECD led to growth cone collapse or other inhibitory responses. These results demonstrate that, in addition to the conventional role of Eph proteins signaling as receptors, EphB receptor ECDs can also function in the opposite role as guidance cues to alter axon behavior. Furthermore, the data support a model in which dorsal retinal ganglion cell axons heading to the optic disc encounter a gradient of inhibitory EphB proteins which helps maintain tight axon fasciculation and prevents aberrant axon growth into ventral retina. In conclusion, development of neuronal connectivity may involve the combined activity of Eph proteins serving as guidance receptors and as axon guidance cues.

摘要

轴突导向依赖于由生长锥受体蛋白介导的细胞信号传导,这些受体蛋白对环境中的配体或导向线索作出反应。Eph蛋白是一类受体酪氨酸激酶,它们控制轴突通路的发育,包括视网膜轴突向中枢神经系统靶标的投射。然而,最近对EphB突变小鼠的研究表明,视网膜内轴突向视盘的导向依赖于EphB受体,但与其激酶活性无关。在这里,我们展示了EphB1、B2和B3受体细胞外结构域(ECD)的一种功能,当它们作为底物结合蛋白或通过微量移液器直接应用于生长锥的可溶性蛋白时,能够抑制小鼠视网膜轴突。在底物选择试验中,视网膜轴突倾向于避开EphB-ECD,而延时显微镜显示,暴露于可溶性EphB-ECD会导致生长锥塌陷或其他抑制性反应。这些结果表明,除了Eph蛋白作为受体进行信号传导的传统作用外,EphB受体ECD还可以作为导向线索发挥相反的作用,从而改变轴突行为。此外,数据支持这样一种模型,即背侧视网膜神经节细胞轴突在朝向视盘时会遇到抑制性EphB蛋白的梯度,这有助于维持紧密的轴突束,并防止异常轴突生长到腹侧视网膜。总之,神经元连接的发育可能涉及Eph蛋白作为导向受体和轴突导向线索的联合作用。

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