Neurobiology Department and Italian Institute of Technology Unit, International School for Advanced Studies (SISSA), Via Bonomea 265, 34136 Trieste, Italy.
J Biol Chem. 2011 Jun 10;286(23):20942-51. doi: 10.1074/jbc.M111.234641. Epub 2011 Apr 20.
Gephyrin is a scaffold protein essential for stabilizing glycine and GABA(A) receptors at inhibitory synapses. Here, recombinant intrabodies against gephyrin (scFv-gephyrin) were used to assess whether this protein exerts a transynaptic action on GABA and glutamate release. Pair recordings from interconnected hippocampal cells in culture revealed a reduced probability of GABA release in scFv-gephyrin-transfected neurons compared with controls. This effect was associated with a significant decrease in VGAT, the vesicular GABA transporter, and in neuroligin 2 (NLG2), a protein that, interacting with neurexins, ensures the cross-talk between the post- and presynaptic sites. Interestingly, hampering gephyrin function also produced a significant reduction in VGLUT, the vesicular glutamate transporter, an effect accompanied by a significant decrease in frequency of miniature excitatory postsynaptic currents. Overexpressing NLG2 in gephyrin-deprived neurons rescued GABAergic but not glutamatergic innervation, suggesting that the observed changes in the latter were not due to a homeostatic compensatory mechanism. Pulldown experiments demonstrated that gephyrin interacts not only with NLG2 but also with NLG1, the isoform enriched at excitatory synapses. These results suggest a key role of gephyrin in regulating transynaptic signaling at both inhibitory and excitatory synapses.
网格蛋白是一种支架蛋白,对于稳定抑制性突触中的甘氨酸和 GABA(A) 受体至关重要。在这里,使用针对网格蛋白的重组内抗体 (scFv-网格蛋白) 来评估该蛋白是否对 GABA 和谷氨酸释放具有突触间作用。在培养的相互连接的海马细胞的成对记录中,与对照相比,在 scFv-网格蛋白转染神经元中 GABA 释放的概率降低。这种效应与囊泡 GABA 转运体 VGAT 和神经连接蛋白 2 (NLG2) 的显著减少有关,NLG2 是一种与神经连接蛋白相互作用的蛋白,可确保突触后和突触前位点之间的串扰。有趣的是,阻碍网格蛋白的功能也会导致囊泡谷氨酸转运体 VGLUT 的显著减少,这种效应伴随着兴奋性突触后电流的频率显著降低。在网格蛋白剥夺的神经元中过表达 NLG2 可挽救 GABA 能但不能挽救谷氨酸能神经支配,表明在后一种情况下观察到的变化不是由于体内平衡补偿机制。下拉实验表明,网格蛋白不仅与 NLG2 相互作用,还与 NLG1 相互作用,NLG1 是在兴奋性突触中丰富的同种型。这些结果表明网格蛋白在调节抑制性和兴奋性突触的突触间信号传递中起关键作用。