Department of Biological Sciences, Howard Hughes Medical Institute, Columbia University, New York, NY 10027, USA.
Curr Biol. 2017 Jun 19;27(12):1782-1790.e5. doi: 10.1016/j.cub.2017.05.006. Epub 2017 Jun 1.
Cilia on dendritic endings of sensory neurons organize distinct types of sensory machinery [1]. Ciliated endings display neuron-type-specific patterns of membrane elaborations [1-3], but it is not well understood how such neuron-type-specific morphologies are generated and whether they are coupled to the specification of other identity aspects of a terminally differentiated sensory neuron. In the course of a genome-wide analysis of members of a small family of immunoglobulin domain proteins, we found that OIG-8, a previously uncharacterized transmembrane protein with a single immunoglobulin (Ig) domain, instructs the distinct, neuron-type-specific elaboration of ciliated endings of different olfactory neuron types in the nematode C. elegans. OIG-8 protein localizes to ciliated endings of these sensory neurons, and is transcribed at different levels in distinct olfactory neuron types. oig-8 expression levels correlate with the extent of sensory cilia growth and branching patterns. Loss of oig-8 leads to a reduction in the branching patterns of cilia, whereas raising the levels of oig-8 results in an increase in elaborations. Levels of OIG-8 expression are controlled by the specific combination of a terminal selector type of transcription factors that also specify other identity features of distinct olfactory neuron types.
感觉神经元树突末梢上的纤毛组织了不同类型的感觉机制[1]。纤毛末端显示出神经元类型特异性的膜修饰模式[1-3],但尚不清楚这种神经元类型特异性的形态是如何产生的,以及它们是否与终末分化的感觉神经元的其他身份特征的指定相关联。在对一小族免疫球蛋白结构域蛋白进行全基因组分析的过程中,我们发现以前未被描述的跨膜蛋白 OIG-8 具有一个单一的免疫球蛋白(Ig)结构域,它指导线虫 C. elegans 中不同嗅觉神经元类型的纤毛末端的独特的、神经元类型特异性的修饰。OIG-8 蛋白定位于这些感觉神经元的纤毛末端,并且在不同的嗅觉神经元类型中以不同的水平转录。oig-8 的表达水平与感觉纤毛生长和分支模式的程度相关。缺失 oig-8 会导致纤毛分支模式减少,而提高 oig-8 的水平会导致修饰增加。OIG-8 表达水平受特定的转录因子末端选择器类型的控制,这些转录因子也指定了不同嗅觉神经元类型的其他身份特征。