Ferguson Kerry, Long Hong, Cameron Scott, Chang Wen-Tzu, Rao Yong
McGill Centre for Research in Neuroscience, McGill University Health Centre, Montreal, Quebec H3G 1A4, Canada.
J Neurosci. 2009 Nov 11;29(45):14151-9. doi: 10.1523/JNEUROSCI.2497-09.2009.
Restriction of adjacent same-type axons/dendrites to separate single columns for specific neuronal connections is commonly observed in vertebrates and invertebrates, and is necessary for proper processing of sensory information. Columnar restriction is conceptually similar to tiling, a phenomenon referring to the avoidance of neurites from adjacent same-type neurons. The molecular mechanism underlying the establishment of columnar restriction or axonal/dendritic tiling remains largely undefined. Here, we identify Turtle (Tutl), a member of the conserved Tutl/Dasm1/IgSF9 subfamily of the Ig superfamily, as a key player in regulating the tiling pattern of R7 photoreceptor terminals in Drosophila. Tutl functions to prevent fusion between two adjacent R7 terminals, and acts in parallel to the Activin pathway. Tutl mediates homophilic cell-cell interactions. We propose that extrinsic terminal-terminal recognition mediated by Tutl, acts in concert with intrinsic Activin-dependent control of terminal growth, to restrict the connection made by each R7 axon to a single column.
在脊椎动物和无脊椎动物中,通常会观察到相邻的同类型轴突/树突被限制在特定神经元连接的单独单柱中,这对于感觉信息的正确处理是必要的。柱状限制在概念上类似于平铺,这是一种指相邻同类型神经元的神经突相互避开的现象。柱状限制或轴突/树突平铺建立的分子机制在很大程度上仍不清楚。在这里,我们鉴定出乌龟(Tutl),它是免疫球蛋白超家族中保守的Tutl/Dasm1/IgSF9亚家族的成员,是调节果蝇R7光感受器终端平铺模式的关键因子。Tutl的作用是防止两个相邻的R7终端融合,并与激活素途径并行发挥作用。Tutl介导同源性细胞间相互作用。我们提出,由Tutl介导的外在终端-终端识别与终端生长的内在激活素依赖性控制协同作用,将每个R7轴突的连接限制在单个柱中。