Division of Membrane Physiology, Department of Molecular and Cellular Physiology, National Institute for Physiological Sciences, National Institutes of Natural Sciences, Aichi 444-8787, Japan.
Department of Physiological Sciences, School of Life Science, SOKENDAI (The Graduate University for Advanced Studies), Aichi 444-8585, Japan.
Proc Natl Acad Sci U S A. 2021 Jan 19;118(3). doi: 10.1073/pnas.2022580118.
Physiological functioning and homeostasis of the brain rely on finely tuned synaptic transmission, which involves nanoscale alignment between presynaptic neurotransmitter-release machinery and postsynaptic receptors. However, the molecular identity and physiological significance of transsynaptic nanoalignment remain incompletely understood. Here, we report that epilepsy gene products, a secreted protein LGI1 and its receptor ADAM22, govern transsynaptic nanoalignment to prevent epilepsy. We found that LGI1-ADAM22 instructs PSD-95 family membrane-associated guanylate kinases (MAGUKs) to organize transsynaptic protein networks, including NMDA/AMPA receptors, Kv channels, and LRRTM4-Neurexin adhesion molecules. knock-in mice devoid of the ADAM22-MAGUK interaction display lethal epilepsy of hippocampal origin, representing the mouse model for ADAM22-related epileptic encephalopathy. This model shows less-condensed PSD-95 nanodomains, disordered transsynaptic nanoalignment, and decreased excitatory synaptic transmission in the hippocampus. Strikingly, without ADAM22 binding, PSD-95 cannot potentiate AMPA receptor-mediated synaptic transmission. Furthermore, forced coexpression of ADAM22 and PSD-95 reconstitutes nano-condensates in nonneuronal cells. Collectively, this study reveals LGI1-ADAM22-MAGUK as an essential component of transsynaptic nanoarchitecture for precise synaptic transmission and epilepsy prevention.
大脑的生理功能和内稳态依赖于精细调节的突触传递,这涉及到突触前神经递质释放机制和突触后受体之间的纳米级对准。然而,突触间纳米对准的分子身份和生理意义仍不完全清楚。在这里,我们报告癫痫基因产物,一种分泌蛋白 LGI1 和它的受体 ADAM22,控制着突触间纳米对准,以预防癫痫。我们发现 LGI1-ADAM22 指导 PSD-95 家族膜相关鸟苷酸激酶(MAGUKs)来组织突触间的蛋白质网络,包括 NMDA/AMPA 受体、Kv 通道和 LRRTM4-Neurexin 粘附分子。缺乏 ADAM22-MAGUK 相互作用的 knock-in 小鼠表现出致命的海马起源癫痫,代表了与 ADAM22 相关的癫痫性脑病的小鼠模型。该模型显示 PSD-95 的纳米域凝聚较少,突触间纳米对准紊乱,以及海马中的兴奋性突触传递减少。引人注目的是,没有 ADAM22 结合,PSD-95 不能增强 AMPA 受体介导的突触传递。此外,ADAM22 和 PSD-95 的强制共表达在非神经元细胞中重新构建了纳米凝聚体。总的来说,这项研究揭示了 LGI1-ADAM22-MAGUK 是突触传递精确性和癫痫预防的突触间纳米结构的重要组成部分。