Mosca Timothy J, Luo Liqun
Department of Biology, Howard Hughes Medical Institute, Stanford University, Stanford, United States.
Elife. 2014 Oct 13;3:e03726. doi: 10.7554/eLife.03726.
Understanding information flow through neuronal circuits requires knowledge of their synaptic organization. In this study, we utilized fluorescent pre- and postsynaptic markers to map synaptic organization in the Drosophila antennal lobe, the first olfactory processing center. Olfactory receptor neurons (ORNs) produce a constant synaptic density across different glomeruli. Each ORN within a class contributes nearly identical active zone number. Active zones from ORNs, projection neurons (PNs), and local interneurons have distinct subglomerular and subcellular distributions. The correct number of ORN active zones and PN acetylcholine receptor clusters requires the Teneurins, conserved transmembrane proteins involved in neuromuscular synapse organization and synaptic partner matching. Ten-a acts in ORNs to organize presynaptic active zones via the spectrin cytoskeleton. Ten-m acts in PNs autonomously to regulate acetylcholine receptor cluster number and transsynaptically to regulate ORN active zone number. These studies advanced our ability to assess synaptic architecture in complex CNS circuits and their underlying molecular mechanisms.
了解神经元回路中的信息流需要掌握其突触组织情况。在本研究中,我们利用荧光突触前和突触后标记物来绘制果蝇触角叶(首个嗅觉处理中心)中的突触组织图谱。嗅觉受体神经元(ORN)在不同的嗅觉小球中产生恒定的突触密度。同一类中的每个ORN贡献的活性区数量几乎相同。ORN、投射神经元(PN)和局部中间神经元的活性区具有不同的小球内和亚细胞分布。ORN活性区和PN乙酰胆碱受体簇的正确数量需要Teneurins,这是一种参与神经肌肉突触组织和突触伙伴匹配的保守跨膜蛋白。Ten-a在ORN中起作用,通过血影蛋白细胞骨架来组织突触前活性区。Ten-m在PN中自主发挥作用,调节乙酰胆碱受体簇的数量,并通过跨突触作用调节ORN活性区的数量。这些研究提高了我们评估复杂中枢神经系统回路中突触结构及其潜在分子机制的能力。