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突触前钙离子内流通过调节易释放池的有效大小来控制神经递质的释放。

Presynaptic calcium influx controls neurotransmitter release in part by regulating the effective size of the readily releasable pool.

机构信息

Department of Neurobiology, Harvard Medical School, Boston MA 02115, USA.

出版信息

J Neurosci. 2013 Mar 13;33(11):4625-33. doi: 10.1523/JNEUROSCI.4031-12.2013.

Abstract

The steep calcium dependence of synaptic strength that has been observed at many synapses is thought to reflect a calcium dependence of the probability of vesicular exocytosis (p), with the cooperativity of three to six corresponding to the multiple calcium ion binding sites on the calcium sensor responsible for exocytosis. Here we test the hypothesis that the calcium dependence of the effective size of the readily releasable pool (RRP) also contributes to the calcium dependence of release at the calyx of Held synapse in mice. Using two established methods of quantifying neurotransmitter release evoked by action potentials (effective RRP), we find that when calcium influx is changed by altering the external calcium concentration, the calcium cooperativity of p is insufficient to account for the full calcium dependence of EPSC size; the calcium dependence of the RRP size also contributes. Reducing calcium influx by blocking R-type voltage-gated calcium channels (VGCCs) with Ni(2+), or by blocking P/Q-type VGCCs with ω-agatoxin IVA also changes EPSC amplitude by reducing both p and the effective RRP size. This suggests that the effective RRP size is dependent on calcium influx through VGCCs. Furthermore, activation of GABAB receptors, which reduces presynaptic calcium through VGCCs without other significant effects on release, also reduces the effective RRP size in addition to reducing p. These findings indicate that calcium influx regulates the RRP size along with p, which contributes to the calcium dependence of synaptic strength, and it influences the manner in which presynaptic modulation of presynaptic calcium channels affects neurotransmitter release.

摘要

在许多突触中观察到的突触强度的陡峭钙依赖性被认为反映了囊泡胞吐作用的概率 (p) 的钙依赖性,其中三到六个的协同作用对应于负责胞吐作用的钙传感器上的多个钙离子结合位点。在这里,我们测试了以下假设:即易释放池 (RRP) 的有效大小的钙依赖性也有助于在小鼠中突出前末端的 calyx of Held 突触中的释放的钙依赖性。使用两种已建立的方法来量化动作电位引发的神经递质释放(有效 RRP),我们发现当通过改变外部钙浓度来改变钙内流时,p 的钙协同作用不足以解释 EPSC 大小的完整钙依赖性;RRP 大小的钙依赖性也有贡献。通过用 Ni(2+) 阻断 R 型电压门控钙通道 (VGCC) 或用 ω-芋螺毒素 IVA 阻断 P/Q 型 VGCC 来减少钙内流,也会通过降低 p 和有效 RRP 大小来改变 EPSC 幅度。这表明有效 RRP 大小取决于 VGCC 中的钙内流。此外,激活 GABAB 受体,通过 VGCC 减少突触前钙而对释放没有其他显著影响,除了降低 p 之外,还降低了有效 RRP 大小。这些发现表明钙内流调节与 p 一起调节 RRP 大小,这有助于突触强度的钙依赖性,并影响突触前钙通道的突触前调节对神经递质释放的影响方式。

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