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Probing Fundamental Aspects of Synaptic Transmission with Strontium

机译:用锶探究突触传递的基本方面

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摘要

Strontium is capable of supporting synaptic transmission, but release is dramatically different from that evoked in calcium. By measuring presynaptic strontium levels, we gain insight into the actions of strontium, which has implications for the identification of molecules involved in different aspects of synaptic transmission. We examined presynaptic divalent levels and synaptic release at the granule cell to stellate cell synapse in mouse cerebellar slices. We find that the prolonged duration of release and paired-pulse facilitation in the presence of strontium can be accounted for by the slower removal of strontium from the presynaptic terminal. Phasic and delayed release are both driven by strontium less effectively than by calcium, indicating that a heightened sensitivity to strontium is not a feature of the binding sites involved in facilitation and delayed release. We also find that the cooperativity for phasic release is 1.7 for strontium compared with 3.2 for calcium, suggesting that differential binding may help to identify the calcium sensor involved in phasic release.
机译:锶能够支持突触传递,但释放与钙引起的释放有很大不同。通过测量突触前锶的水平,我们了解了锶的作用,这对于鉴定与突触传递不同方面有关的分子具有重要意义。我们检查了小鼠小脑切片中突触前的二价水平和突触释放的颗粒细胞以星状细胞突触。我们发现锶的存在下释放和配对脉冲促进的持续时间延长可以通过从突触前末端较慢地除去锶来解决。锶对钙的驱动作用不如钙和钙的延迟释放慢,这表明对锶的敏感性增强不是促进和延迟释放所涉及的结合位点的特征。我们还发现,对于锶,相释放的协同作用为1.7,而钙为3.2,这表明差异结合可能有助于鉴定参与相释放的钙传感器。

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