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GABAB receptor-mediated frequency-dependent and circadian changes in synaptic plasticity modulate retinal input to the suprachiasmatic nucleus

机译:GABA B受体介导的频率依赖性和昼夜节律变化在突触可塑性中调节视网膜向视交叉上核的输入。

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摘要

Light is the most important environmental signal that entrains the circadian clock located in the hypothalamic suprachiasmatic nucleus (SCN). The retinohypothalamic tract (RHT) was stimulated to simulate the light intensity-dependent discharges of intrinsically photosensitive retinal ganglion cells projecting axons to the hypothalamus. EPSCs were evoked by paired-pulse stimulation or by application of stimulus trains, and recorded from SCN neurons in rat brain slices. Initial release probability (Pr) and synaptic plasticity changes depended on the strength of GABAB receptor (GABABR)-mediated presynaptic inhibition and could be different at the same GABABR agonist concentration. Facilitation caused by frequency-dependent relief of GABABR-mediated inhibition was observed when the initial Pr was decreased to less than 15% of control during strong activation of presynaptic GABAB receptors by (±)baclofen (10 μm), GABA (≥2 mm) or by GABA uptake inhibitor nipecotic acid (≥5 mm). In contrast, short-term synaptic depression appeared during baclofen (10 μm) application when initial Pr was greater than 30% of control. Block of 4-aminopyridine-sensitive K+ currents increased the amplitude and time constant of decay of evoked EPSCs (eEPSCs), and decreased the GABABR-mediated presynaptic inhibition. The GABAB receptor antagonist (3 μm) increased the eEPSCs amplitude 30% throughout the light−dark cycle. During light and dark phases the RHT inputs to 55% and 33% of recorded neurons, respectively, were under GABAB inhibitory control indicating that the tonic inhibition induced by local changes of endogenous GABA concentration contributes to the circadian variation of RHT transmitter release. We conclude that GABABR-mediated presynaptic inhibition decreased with increasing frequency and broadening of presynaptic action potentials, and depended on the sensitivity of RHT terminals to GABABR agonists, and diurnal changes of the extracellular GABA concentration around RHT axon terminals in the SCN.
机译:光是最重要的环境信号,它会带动下丘脑视交叉上核(SCN)中的生物钟。刺激视网膜下丘脑束(RHT)以模拟将轴突投射到下丘脑的内在感光性视网膜神经节细胞的光强度依赖性放电。 EPSC通过成对脉冲刺激或通过刺激序列诱发,并从大鼠脑切片中的SCN神经元记录下来。初始释放概率(Pr)和突触可塑性变化取决于GABAB受体(GABABR)介导的突触前抑制的强度,并且在相同的GABABR激动剂浓度下可能有所不同。在(±)baclofen(10μm),GABA(≥2mm)强烈激活突触前GABAB受体的过程中,当初始Pr降至对照的15%以下时,观察到由频率依赖性GABABR介导的抑制作用引起的促进作用或通过GABA摄取抑制剂乳酸盐(≥5mm)。相反,当初始Pr大于对照组的30%时,巴氯芬(10μm)施用期间会出现短期突触抑制。阻断4-氨基吡啶敏感性K + 电流可增加诱发的EPSCs(eEPSCs)的衰减幅度和时间常数,并降低GABABR介导的突触前抑制。在整个明暗循环中,GABAB受体拮抗剂(3μm)使eEPSC振幅增加了30%。在亮相和暗相期间,分别对记录的神经元的55%和33%的RHT输入处于GABAB抑制控制之下,这表明由内源性GABA浓度的局部变化引起的强直抑制作用促进了RHT递质释放的昼夜变化。我们得出的结论是,GABABR介导的突触前抑制作用随着频率的增加和突触前动作电位的增高而降低,并且取决于RHT末端对GABABR激动剂的敏感性以及SCN中RHT轴突末端周围细胞外GABA浓度的日变化。

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