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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spontaneous Vesicle Release Is Not Tightly Coupled to Voltage-Gated Calcium Channel-Mediated Ca2+ Influx and Is Triggered by a Ca2+ Sensor Other Than Synaptotagmin-2 at the Juvenile Mice Calyx of Held Synapses
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Spontaneous Vesicle Release Is Not Tightly Coupled to Voltage-Gated Calcium Channel-Mediated Ca2+ Influx and Is Triggered by a Ca2+ Sensor Other Than Synaptotagmin-2 at the Juvenile Mice Calyx of Held Synapses

机译:自发囊泡释放不紧密耦合到电压门控钙通道介导的Ca2 +内流,并由在举行突触的少年小鼠萼片上非Synaptotagmin-2的Ca2 +传感器触发。

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摘要

It is well known that voltage-gated calcium channels (VGCCs)-mediated Ca2+ influx triggers evoked synaptic vesicle release. However, the mechanisms of Ca2+ regulation of spontaneous miniature vesicle release (mini) remain poorly understood. Here we show that blocking VGCCs at the juvenile mice (C57BL/6) calyx of Held synapse failed to cause an immediate change in minis. Instead, it resulted in a significant reduction (similar to 40%) of mini frequency several minutes after the blockage. By recording VGCC activity and single vesicle fusion events directly at the presynaptic terminal, we found that minis did not couple to VGCC-mediated Ca2+ entry, arguing for a lack of direct correlation between mini and transient Ca2+ influx. Moreover, mini frequencies displayed a lower apparent Ca2+ cooperativity than those of evoked release. In agreement with this observation, abrogation of the Ca2+ sensor synaptotagmin-2 had no effect on apparent Ca2+ cooperativity of minis. Together, our study provides the first direct evidence that spontaneous minis are not mediated by transient Ca2+ signals through VGCCs and are triggered by a Ca2+-sensing mechanism that is different from the evoked release at these microdomain VGCC-vesicle coupled synapses.
机译:众所周知,电压门控钙通道(VGCC)介导的Ca2 +内流触发诱发的突触小泡释放。然而,Ca 2 +调节自发的微型囊泡释放(微型)的机制仍然知之甚少。在这里,我们显示,在举行的突触的幼年小鼠(C57BL / 6)花萼中阻止VGCC不会导致小数立即变化。相反,它导致阻塞后数分钟的微型频率显着降低(约40%)。通过直接在突触前末端记录VGCC活性和单囊泡融合事件,我们发现minis不会与VGCC介导的Ca2 +进入耦合,认为mini和瞬时Ca2 +流入之间缺乏直接相关性。而且,小频率显示的Ca2 +协同作用比诱发释放的低。与该观察结果一致,取消Ca2 +传感器突触结合蛋白2对小分子的表观Ca2 +协同作用没有影响。在一起,我们的研究提供了第一个直接的证据,即自发的迷你不是由通过VGCC的瞬时Ca2 +信号介导的,而是由Ca2 +感应机制触发的,该机制不同于这些微域VGCC-囊泡偶联突触的诱发释放。

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