Department of Neuroscience, Columbia University, New York, NY 10027, USA; Zuckerman Mind Brain Behavior Institute, Columbia University, New York, NY 10027, USA.
VIB Center for Brain and Disease Research, Herestraat 49, 3000 Leuven, Belgium; Department of Neurosciences, KU Leuven, Herestraat 49, 3000 Leuven, Belgium.
Cell Rep. 2021 Oct 19;37(3):109828. doi: 10.1016/j.celrep.2021.109828.
Synaptic connectivity within adult circuits exhibits a remarkable degree of cellular and subcellular specificity. We report that the axon guidance receptor Robo2 plays a role in establishing synaptic specificity in hippocampal CA1. In vivo, Robo2 is present and required postsynaptically in CA1 pyramidal neurons (PNs) for the formation of excitatory (E) but not inhibitory (I) synapses, specifically in proximal but not distal dendritic compartments. In vitro approaches show that the synaptogenic activity of Robo2 involves a trans-synaptic interaction with presynaptic Neurexins, as well as binding to its canonical extracellular ligand Slit. In vivo 2-photon Ca imaging of CA1 PNs during spatial navigation in awake behaving mice shows that preventing Robo2-dependent excitatory synapse formation cell autonomously during development alters place cell properties of adult CA1 PNs. Our results identify a trans-synaptic complex linking the establishment of synaptic specificity to circuit function.
成年回路中的突触连接表现出显著的细胞和亚细胞特异性。我们报告称,轴突导向受体 Robo2 在海马 CA1 中建立突触特异性方面发挥作用。在体内,Robo2 存在于 CA1 锥体神经元(PN)中,并在后突触处发挥作用,对于兴奋性(E)而非抑制性(I)突触的形成是必需的,特别是在近端而非远端树突隔室中。体外方法表明,Robo2 的促突触生成活性涉及与突触前神经连接蛋白的跨突触相互作用,以及与其经典细胞外配体 Slit 的结合。在清醒行为小鼠的空间导航过程中,对 CA1 PN 进行体内 2 光子 Ca 成像显示,在发育过程中自主地阻止 Robo2 依赖性兴奋性突触形成会改变成年 CA1 PN 的位置细胞特性。我们的结果确定了一个连接突触特异性建立与回路功能的跨突触复合物。