Department of Physiology and Pharmacology, Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.
Neuron. 2010 Jul 29;67(2):253-67. doi: 10.1016/j.neuron.2010.06.022.
Presynaptic GABA(B) receptor (GABA(B)R) heterodimers are composed of GB(1a)/GB(2) subunits and critically influence synaptic and cognitive functions. Here, we explored local GABA(B)R activation by integrating optical tools for monitoring receptor conformation and synaptic vesicle release at individual presynaptic boutons of hippocampal neurons. Utilizing fluorescence resonance energy transfer (FRET) spectroscopy, we detected a wide range of FRET values for CFP/YFP-tagged GB(1a)/GB(2) receptors that negatively correlated with release probabilities at single synapses. High FRET of GABA(B)Rs associated with low release probability. Notably, pharmacological manipulations that either reduced or increased basal receptor activation decreased intersynapse variability of GB(1a)/GB(2) receptor conformation. Despite variability along axons, presynaptic GABA(B)R tone was dendrite specific, having a greater impact on synapses at highly innervated proximal branches. Prolonged neuronal inactivity reduced basal receptor activation, leading to homeostatic augmentation of release probability. Our findings suggest that local variations in basal GABA concentration are a major determinant of GB(1a)/GB(2) conformational variability, which contributes to heterogeneity of neurotransmitter release at hippocampal synapses.
前突触 GABA(B) 受体 (GABA(B)R) 异源二聚体由 GB(1a)/GB(2) 亚基组成,对突触和认知功能有重要影响。在这里,我们通过整合监测海马神经元单个前突末梢受体构象和突触小泡释放的光学工具,探索了局部 GABA(B)R 的激活。我们利用荧光共振能量转移 (FRET) 光谱学,检测到 CFP/YFP 标记的 GB(1a)/GB(2) 受体的广泛 FRET 值,其与单个突触的释放概率呈负相关。GABA(B)R 的高 FRET 值与低释放概率相关。值得注意的是,降低或增加基础受体激活的药理学处理均减少了 GB(1a)/GB(2) 受体构象的突触间变异性。尽管在轴突上存在变异性,但前突触 GABA(B)R 张力具有树突特异性,对高度神经支配的近端分支上的突触影响更大。神经元长时间不活动会降低基础受体激活,导致释放概率的平衡增强。我们的发现表明,基础 GABA 浓度的局部变化是 GB(1a)/GB(2) 构象变异性的主要决定因素,这有助于海马突触神经递质释放的异质性。