CNRS, UMR-5203, Institut de Génomique Fonctionnelle, F-34000 Montpellier, France.
J Cell Sci. 2012 Apr 15;125(Pt 8):2030-40. doi: 10.1242/jcs.098160. Epub 2012 Feb 10.
At glutamatergic brain synapses, scaffolding proteins regulate receptor location and function. The targeting and organization of scaffolding proteins in the postsynaptic density (PSD) is poorly understood, but it is known that a core protein of the glutamatergic receptor postsynaptic scaffold complex, guanylate-kinase-associated protein (GKAP) interacts with dynein light chain 2 (DLC2, also known as DYNLL2), a protein associated with molecular motors. In the present study, we combined BRET imaging, immunostaining and electrophysiological recording to assess the role of the GKAP-DLC2 interaction in the functional organization of the glutamatergic synapse. We found that GKAP-DLC2 interaction in dendritic spine stabilizes scaffolding protein expression at the PSD and enhances synaptic NMDA receptor activity. Moreover, the GKAP-DLC2 functional interaction is favored by sustained synaptic activity. These data identify a regulatory pathway of synaptic transmission that depends on activity-induced remodelling of the postsynaptic scaffold protein complex.
在谷氨酸能脑突触中,支架蛋白调节受体的位置和功能。突触后密度(PSD)中支架蛋白的靶向和组织尚不清楚,但已知谷氨酸能受体突触后支架复合物的核心蛋白之一,鸟苷酸激酶相关蛋白(GKAP)与动力蛋白轻链 2(DLC2,也称为 DYNLL2)相互作用,DLC2 是一种与分子马达相关的蛋白质。在本研究中,我们结合了 BRET 成像、免疫染色和电生理记录来评估 GKAP-DLC2 相互作用在谷氨酸能突触的功能组织中的作用。我们发现树突棘中的 GKAP-DLC2 相互作用稳定了 PSD 处的支架蛋白表达,并增强了突触 NMDA 受体活性。此外,GKAP-DLC2 的功能相互作用有利于持续的突触活动。这些数据确定了一种依赖于突触后支架蛋白复合物的活性诱导重塑的突触传递调节途径。