Leung Louis C, Harris William A, Holt Christine E, Piper Michael
Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK, CB2 3DY, United Kingdom.
Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK, CB2 3DY, United Kingdom; The School of Biomedical Sciences and the Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4072, Australia.
PLoS One. 2015 Oct 21;10(10):e0141290. doi: 10.1371/journal.pone.0141290. eCollection 2015.
Cell adhesion molecules play a central role in mediating axonal tract development within the nascent nervous system. NF-protocadherin (NFPC), a member of the non-clustered protocadherin family, has been shown to regulate retinal ganglion cell (RGC) axon and dendrite initiation, as well as influencing axonal navigation within the mid-optic tract. However, whether NFPC mediates RGC axonal behaviour at other positions within the optic pathway remains unclear. Here we report that NFPC plays an important role in RGC axonogenesis, but not in intraretinal guidance. Moreover, axons with reduced NFPC levels exhibit insensitivity to Netrin-1, an attractive guidance cue expressed at the optic nerve head. Netrin-1 induces rapid turnover of NFPC localized to RGC growth cones, suggesting that the regulation of NFPC protein levels may underlie Netrin-1-mediated entry of RGC axons into the optic nerve head. At the tectum, we further reveal a function for NFPC in controlling RGC axonal entry into the final target area. Collectively, our results expand our understanding of the role of NFPC in RGC guidance and illustrate that this adhesion molecule contributes to axon behaviour at multiple points in the optic pathway.
细胞黏附分子在介导新生神经系统内轴突束发育过程中发挥核心作用。NF-原钙黏蛋白(NFPC)是非成簇原钙黏蛋白家族的成员,已被证明可调节视网膜神经节细胞(RGC)轴突和树突的起始,并影响视束中部的轴突导航。然而,NFPC是否在视路其他位置介导RGC轴突行为仍不清楚。在此,我们报告NFPC在RGC轴突发生中起重要作用,但在视网膜内导向中不起作用。此外,NFPC水平降低的轴突对Netrin-1不敏感,Netrin-1是在视神经乳头表达的一种有吸引力的导向信号。Netrin-1诱导定位于RGC生长锥的NFPC快速周转,这表明NFPC蛋白水平的调节可能是Netrin-1介导RGC轴突进入视神经乳头的基础。在顶盖,我们进一步揭示了NFPC在控制RGC轴突进入最终靶区方面的功能。总体而言,我们的结果扩展了我们对NFPC在RGC导向中作用的理解,并表明这种黏附分子在视路多个点对轴突行为有贡献。