Department of Genetics and Development, Vagelos College of Physicians and Surgeons, Columbia University, New York, NY 10032, USA.
Mortimer B. Zuckerman Mind Brain Behavior Institute, Columbia University, New York, NY 10027, USA.
Development. 2023 Mar 1;150(5). doi: 10.1242/dev.199832. Epub 2023 Mar 15.
Synaptic connections between neurons are often formed in precise subcellular regions of dendritic arbors with implications for information processing within neurons. Cell-cell interactions are widely important for circuit wiring; however, their role in subcellular specificity is not well understood. We studied the role of axon-axon interactions in precise targeting and subcellular wiring of Drosophila somatosensory circuitry. Axons of nociceptive and gentle touch neurons terminate in adjacent, non-overlapping layers in the central nervous system (CNS). Nociceptor and touch receptor axons synapse onto distinct dendritic regions of a second-order interneuron, the dendrites of which span these layers, forming touch-specific and nociceptive-specific connectivity. We found that nociceptor ablation elicited extension of touch receptor axons and presynapses into the nociceptor recipient region, supporting a role for axon-axon interactions in somatosensory wiring. Conversely, touch receptor ablation did not lead to expansion of nociceptor axons, consistent with unidirectional axon-axon interactions. Live imaging provided evidence for sequential arborization of nociceptive and touch neuron axons in the CNS. We propose that axon-axon interactions and modality-specific timing of axon targeting play key roles in subcellular connection specificity of somatosensory circuitry.
神经元之间的突触连接通常形成在树突树突的精确亚细胞区域内,这对神经元内的信息处理有影响。细胞间的相互作用对电路布线很重要;然而,它们在亚细胞特异性中的作用还不是很清楚。我们研究了轴突-轴突相互作用在果蝇感觉电路的精确靶向和亚细胞布线中的作用。伤害感受和轻柔触摸神经元的轴突终止于中枢神经系统 (CNS) 的相邻、不重叠的层中。伤害感受器和触摸感受器轴突与二级中间神经元的不同树突区域形成突触,其树突跨越这些层,形成触摸特异性和伤害感受特异性连接。我们发现,伤害感受器的消融引起了触摸感受器轴突和突触前体向伤害感受器接受区域的延伸,支持轴突-轴突相互作用在感觉布线中的作用。相反,触摸感受器的消融并没有导致伤害感受器轴突的扩张,这与轴突的单向相互作用一致。实时成像提供了证据,证明伤害感受和触摸神经元轴突在中枢神经系统中的顺序分枝。我们提出,轴突-轴突相互作用和轴突靶向的模式特异性时间在感觉电路的亚细胞连接特异性中起着关键作用。