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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >A NOVEL, EXTREMELY FAST, FEEDBACK INHIBITION OF GLUTAMATE RELEASE IN THE CRAYFISH NEUROMUSCULAR JUNCTION
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A NOVEL, EXTREMELY FAST, FEEDBACK INHIBITION OF GLUTAMATE RELEASE IN THE CRAYFISH NEUROMUSCULAR JUNCTION

机译:一种新的,极快的反馈反馈抑制虾肉神经肌肉连接中的谷氨酸盐释放

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Feedback inhibition serves to modulate release when neurotransmitter levels in the synaptic cleft are elevated. The "classical" feedback auto-inhibition of neurotransmitter release is predominantly mediated by activation of presynaptic G-protein-coupled receptors (GPCRs) and exhibits slow kinetics. In cholinergic and glutamatergic synapses and for focal graded depolarization of the axon terminal, feedback inhibition was found to be voltage-dependent. At high depolarizations, such as the one produced by an action potential, low concentrations of neurotransmitter were insufficient to inhibit release. On the other hand, at higher neurotransmitter concentrations, feedback inhibition was observed also for action potential-evoked release. This finding suggests the presence of an additional mechanism of feedback inhibition that operates also at large presynaptic depolarizations. Using the glutamatergic crayfish neuromuscular junction we discovered a novel, extremely fast, form of feedback inhibition which hampers action potential-evoked release. This novel mechanism is pertussis toxin-insensitive, and is activated already 1 ms after flash photolysis producing glutamate concentrations higher than the ones required to activate the classical feedback inhibition. This finding implies that this mechanism is recruited only when glutamate levels in the synaptic cleft are relatively high (after high-frequency activation or in pathological conditions). We show that both the classical and this novel mechanism operate under physiological conditions.
机译:当突触间隙中的神经递质水平升高时,反馈抑制用于调节释放。神经递质释放的“经典”反馈自动抑制主要由突触前G蛋白偶联受体(GPCR)的激活介导,并且动力学缓慢。在胆碱能和谷氨酸能的突触中,对于轴突末端的局部梯度去极化,反馈抑制被发现是电压依赖性的。在高去极化作用下,例如由动作电位产生的去极化作用,低浓度的神经递质不足以抑制释放。另一方面,在较高的神经递质浓度下,也观察到了动作电位诱发释放的反馈抑制。这一发现表明存在另外一种反馈抑制机制,该机制也可在突触前的去极化过程中发挥作用。使用谷氨酸能小龙虾神经肌肉接头,我们发现了一种新型的,极其快速的反馈抑制形式,阻碍了动作电位诱发的释放。这种新颖的机制对百日咳毒素不敏感,并且在快速光解后1毫秒就被激活,产生的谷氨酸盐浓度高于激活经典反馈抑制所需的浓度。该发现暗示仅当突触间隙中的谷氨酸水平相对较高时(在高频激活后或在病理条件下),才招募该机制。我们表明经典和这种新颖的机制都在生理条件下运行。

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