Lévi Sabine, Schweizer Claude, Bannai Hiroko, Pascual Olivier, Charrier Cécile, Triller Antoine
Biologie Cellulaire de la Synapse, INSERM U789, Ecole Normale Supérieure, 46 rue d'Ulm, 75005 Paris, France.
Neuron. 2008 Jul 31;59(2):261-73. doi: 10.1016/j.neuron.2008.05.030.
In the spinal cord, most inhibitory synapses have a mixed glycine-GABA phenotype. Using a pharmacological approach, we report an NMDAR activity-dependent regulation of the mobility of GlyRs but not GABA(A)Rs at inhibitory synapses in cultured rat spinal cord neurons. The NMDAR-induced decrease in GlyR lateral diffusion was correlated with an increase in receptor cluster number and glycinergic mIPSC amplitude. Changes in GlyR diffusion properties occurred rapidly and before the changes in the number of synaptic receptors. Regulation of synaptic GlyR content occurred without change in the amount of gephyrin. Moreover, NMDAR-dependent regulation of GlyR lateral diffusion required calcium influx and calcium release from stores. Therefore, excitation may increase GlyR levels at synapses by a calcium-mediated increase in postsynaptic GlyR trapping involving regulation of receptor-scaffold interactions. This provides a mechanism for a rapid homeostatic regulation of the inhibitory glycinergic component at mixed glycine-GABA synapses in response to increased NMDA excitatory transmission.
在脊髓中,大多数抑制性突触具有甘氨酸 - γ-氨基丁酸(GABA)混合表型。我们采用药理学方法报告,在培养的大鼠脊髓神经元的抑制性突触处,N-甲基-D-天冬氨酸受体(NMDAR)活性依赖于甘氨酸受体(GlyRs)而非GABA A型受体(GABA(A)Rs)的迁移调节。NMDAR诱导的GlyR侧向扩散减少与受体簇数量增加和甘氨酸能微小抑制性突触后电流(mIPSC)幅度增加相关。GlyR扩散特性的变化迅速发生,且早于突触受体数量的变化。突触GlyR含量的调节发生时,桥蛋白的量没有变化。此外,NMDAR依赖的GlyR侧向扩散调节需要钙内流和从储存库释放钙。因此,兴奋可能通过钙介导的突触后GlyR捕获增加(涉及受体 - 支架相互作用的调节)来增加突触处的GlyR水平。这为混合甘氨酸 - GABA突触处的抑制性甘氨酸能成分响应NMDA兴奋性传递增加而进行快速稳态调节提供了一种机制。