Li Zhuoran, Lyu Cheng, Xu Chuanyun, Hu Ying, Luginbuhl David J, Caspi-Lebovic Asaf B, Priest Jessica M, Özkan Engin, Luo Liqun
Department of Biology and Howard Hughes Medical Institute, Stanford University, Stanford, CA 94305, USA.
Biology Graduate Program, Stanford University, Stanford, CA 94305, USA.
bioRxiv. 2025 Mar 2:2025.03.01.640985. doi: 10.1101/2025.03.01.640985.
Neurons exhibit extraordinary precision in selecting synaptic partners. Whereas cell-surface proteins (CSPs) mediating attractive interactions between developing axons and dendrites have been shown to instruct synaptic partner matching, it is less clear the degree to which repulsive interactions play a role. Here, using a genetic screen guided by single cell transcriptomes, we identified three CSP pairs-Toll2-Ptp10D, Fili-Kek1, and Hbs/Sns-Kirre-in mediating repulsive interactions between non-partner olfactory receptor neuron (ORN) axons and projection neuron (PN) dendrites in the developing olfactory circuit. Each CSP pair exhibits inverse expression patterns in the select PN-ORN partners. Loss of each CSP in ORNs led to similar synaptic partner matching deficits as the loss of its partner CSP in PNs, and mistargeting phenotypes caused by overexpressing one CSP could be suppressed by loss of its partner CSP. Each CSP pair is also differentially expressed in other brain regions. Together, our data reveal that multiple repulsive CSP pairs work together to ensure precise synaptic partner matching during development by preventing neurons from forming connections with non-cognate partners.
神经元在选择突触伙伴时表现出非凡的精确性。虽然介导发育中的轴突和树突之间吸引性相互作用的细胞表面蛋白(CSPs)已被证明可指导突触伙伴匹配,但排斥性相互作用在多大程度上发挥作用尚不清楚。在这里,我们利用单细胞转录组引导的遗传筛选,在发育中的嗅觉回路中鉴定出三对CSP——Toll2-Ptp10D、Fili-Kek1和Hbs/Sns-Kirre,它们介导非伙伴嗅觉受体神经元(ORN)轴突与投射神经元(PN)树突之间的排斥性相互作用。每对CSP在选定的PN-ORN伙伴中表现出相反的表达模式。ORN中每种CSP的缺失导致与PN中其伙伴CSP缺失类似的突触伙伴匹配缺陷,并且过表达一种CSP所导致的错误靶向表型可通过其伙伴CSP的缺失来抑制。每对CSP在其他脑区也有差异表达。总之,我们的数据表明,多个排斥性CSP对共同作用,通过阻止神经元与非同源伙伴形成连接,确保发育过程中精确的突触伙伴匹配。