Department of Pharmacological and Biomolecular Sciences, University of Milan, 20133 Milan, Italy.
Department of Neurobiology, Interdisciplinary Center for Neurosciences (IZN), Heidelberg University, INF 366, 69120 Heidelberg, Germany.
Cells. 2022 May 11;11(10):1616. doi: 10.3390/cells11101616.
The interaction of Rabphilin-3A (Rph3A) with the NMDA receptor (NMDAR) in hippocampal neurons plays a pivotal role in the synaptic retention of this receptor. The formation of a Rph3A/NMDAR complex is needed for the induction of long-term potentiation and NMDAR-dependent hippocampal behaviors, such as spatial learning. Moreover, Rph3A can also interact with AMPA receptors (AMPARs) through the formation of a complex with myosin Va. Here, we used a confocal imaging approach to show that Rph3A overexpression in primary hippocampal neuronal cultures is sufficient to promote increased dendritic spine density. This morphological event is correlated with an increase in GluN2A-containing NMDARs at synaptic membranes and a decrease in the surface levels of GluA1-containing AMPARs. These molecular and morphological modifications of dendritic spines are sufficient to occlude the spine formation induced by long-term potentiation, but do not prevent the spine loss induced by long-term depression. Overall, our results demonstrate a key role for Rph3A in the modulation of structural synaptic plasticity at hippocampal synapses that correlates with its interactions with both NMDARs and AMPARs.
Rabphilin-3A(Rph3A)与海马神经元中 NMDA 受体(NMDAR)的相互作用在该受体的突触保留中起着关键作用。Rph3A/NMDAR 复合物的形成对于长时程增强和 NMDAR 依赖性海马行为(如空间学习)的诱导是必需的。此外,Rph3A 还可以通过与肌球蛋白 Va 形成复合物与 AMPA 受体(AMPAR)相互作用。在这里,我们使用共聚焦成像方法表明,原代海马神经元培养物中 Rph3A 的过表达足以促进树突棘密度的增加。这种形态学事件与突触膜上含有 GluN2A 的 NMDAR 的增加以及含有 GluA1 的 AMPAR 的表面水平的降低相关。这些树突棘的分子和形态学修饰足以阻断长时程增强诱导的棘形成,但不能防止长时程压抑诱导的棘丢失。总的来说,我们的结果表明 Rph3A 在调节海马突触的结构突触可塑性中起着关键作用,这与其与 NMDAR 和 AMPAR 的相互作用相关。