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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neuromodulation at single presynaptic boutons of cerebellar parallel fibers is determined by bouton size and basal action potential-evoked Ca transient amplitude
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Neuromodulation at single presynaptic boutons of cerebellar parallel fibers is determined by bouton size and basal action potential-evoked Ca transient amplitude

机译:小脑平行纤维的单个突触前钮扣的神经调节取决于钮扣尺寸和基础动作电位诱发的Ca瞬变幅度

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摘要

Most presynaptic terminals in the brain contain G-protein-coupled receptors that function to reduce action potential-evoked neurotransmitter release. These neuromodulatory receptors, including those for glutamate, GABA, endocannabinoids, and adenosine, exert a substantial portion of their effect by reducing evoked presynaptic Ca2+ transients. Many axons form synapses with multiple postsynaptic neurons, but it is unclear whether presynaptic attenuation in these synapses is homogeneous, as suggested by population-level Ca2+ imaging. We loaded Ca2+-sensitive dyes into cerebellar parallel fiber axons and imaged action potential-evoked Ca 2+ transients in individual presynaptic boutons with application of three different neuromodulators and found that adjacent boutons on the same axon showed striking heterogeneity in their strength of attenuation. Moreover, attenuation was predicted by bouton size or basal Ca2+ response: smaller boutons were more sensitive to adenosine A1 agonist but less sensitive to CB1 agonist, while boutons with high basal action potential-evoked Ca 2+ transient amplitude weremoresensitive to mGluR4 agonist. These results suggest that boutons within brief segment of a single parallel fiber axon can have different sensitivities toward neuromodulators and may have different capacities for both short-term and long-term plasticities.
机译:大脑中大多数突触前末端含有G蛋白偶联受体,其功能是减少动作电位诱发的神经递质释放。这些神经调节受体,包括谷氨酸,GABA,内源性大麻素和腺苷的神经调节受体,通过减少诱发的突触前Ca2 +瞬变,发挥了很大一部分作用。许多轴突形成具有多个突触后神经元的突触,但是尚不清楚这些突触中突触前衰减是否均匀,如人群水平的Ca2 +成像所暗示的那样。我们将Ca2 +敏感染料加载到小脑平行纤维轴突中,并通过应用三种不同的神经调节剂在单个突触前突突中对动作电位诱发的Ca 2+瞬变进行成像,发现同一突突上的相邻突突在衰减强度上表现出惊人的异质性。此外,衰减是通过bouton大小或基底Ca2 +反应来预测的:​​较小的bouton对腺苷A1激动剂更敏感,但对CB1激动剂较不敏感,而具有高基础动作电位诱发的Ca 2+瞬时振幅的bouton对mGluR4激动剂更敏感。这些结果表明,单个平行纤维轴突的短段内的钮扣对神经调节剂的敏感性不同,短期和长期可塑性也可能不同。

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