Department of Molecular Life Sciences, University of Zurich, 8057 Zurich, Switzerland.
Neuroscience Center Zurich, University of Zurich/Swiss Federal Institute of Technology (ETH) Zurich, Zurich, 8057 Switzerland.
Proc Natl Acad Sci U S A. 2022 Nov 8;119(45):e2119044119. doi: 10.1073/pnas.2119044119. Epub 2022 Nov 2.
Robust neural information transfer relies on a delicate molecular nano-architecture of chemical synapses. Neurotransmitter release is controlled by a specific arrangement of proteins within presynaptic active zones. How the specific presynaptic molecular architecture relates to postsynaptic organization and how synaptic nano-architecture is transsynaptically regulated to enable stable synaptic transmission remain enigmatic. Using time-gated stimulated emission-depletion microscopy at the neuromuscular junction, we found that presynaptic nanorings formed by the active-zone scaffold Bruchpilot (Brp) align with postsynaptic glutamate receptor (GluR) rings. Individual rings harbor approximately four transsynaptically aligned Brp-GluR nanocolumns. Similar nanocolumn rings are formed by the presynaptic protein Unc13A and GluRs. Intriguingly, acute GluR impairment triggers transsynaptic nanocolumn formation on the minute timescale during homeostatic plasticity. We reveal distinct phases of structural transsynaptic homeostatic plasticity, with postsynaptic GluR reorganization preceding presynaptic Brp modulation. Finally, homeostatic control of transsynaptic nano-architecture and neurotransmitter release requires the auxiliary GluR subunit Neto. Thus, transsynaptic nanocolumn rings provide a substrate for rapid homeostatic stabilization of synaptic efficacy.
稳健的神经信息传递依赖于化学突触的精细分子纳米结构。神经递质的释放受突触前活性区特定排列的蛋白质控制。特定的突触前分子结构如何与突触后组织相关,以及突触纳米结构如何通过跨突触调节来实现稳定的突触传递,这些仍然是谜。我们使用神经肌肉接头的时间门控受激辐射损耗显微镜发现,由活性区支架 Bruchpilot (Brp) 形成的突触前纳米环与突触后谷氨酸受体 (GluR) 环对齐。单个环大约包含四个跨突触排列的 Brp-GluR 纳米柱。由突触前蛋白 Unc13A 和 GluRs 形成类似的纳米柱环。有趣的是,急性 GluR 损伤会在体内稳态可塑性的微小时间尺度上触发跨突触纳米柱的形成。我们揭示了结构跨突触稳态可塑性的不同阶段,突触后 GluR 重组先于突触前 Brp 调节。最后,跨突触纳米结构和神经递质释放的稳态控制需要辅助 GluR 亚基 Neto。因此,跨突触纳米柱环为突触效能的快速稳态稳定提供了基础。