首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Transient upregulation of postsynaptic IP3-gated Ca release underlies short-term potentiation of metabotropic glutamate receptor 1 signaling in cerebellar Purkinje cells.
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Transient upregulation of postsynaptic IP3-gated Ca release underlies short-term potentiation of metabotropic glutamate receptor 1 signaling in cerebellar Purkinje cells.

机译:突触后IP3门控的Ca释放的​​瞬时上调是小脑Purkinje细胞中代谢型谷氨酸受体1信号转导的短期增强的基础。

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摘要

Synaptic plasticity lasting approximately 100 s has been suggested to function as a temporary buffer for neural information. One example of this was reported by Batchelor and Garthwaite (1997), who found that a slow metabotropic glutamate receptor 1 (mGluR1)-evoked EPSP produced by burst stimulation of cerebellar parallel fiber-Purkinje cell synapses could be potentiated by a conditioning stimulus consisting of prior activation of climbing fiber synapses (or injection of depolarizing current) with a delay of up to 90 s. What is the molecular basis of the signal that spans this temporal gap? Here, we show that mGluR1-evoked slow EPSCs evoked by parallel fiber burst test stimuli show a similar form of short-term potentiation (mGluR1-STP) and that this phenomenon is also observed when parallel fiber bursts are replaced by pressure pulses of an exogenous mGluR1 agonist. Ca imaging experiments revealed that cytosolic Ca levels returned to baseline within several seconds after conditioning depolarization, indicating that this cannot underlie mGluR1-STP. To test the hypothesis that transient upregulation of inositol-1,4,5-trisphosphate (IP(3))-gated Ca release underlies this phenomenon, we used local photolytic uncaging of IP(3) to deplete IP(3)-gated Ca stores. IP(3) uncaging in the interval between conditioning depolarization and the test pulse produced a complete blockade of mGluR1-STP, as did blockade of IP(3) receptors with heparin. When Ca transients evoked by IP(3) uncaging were used as a test stimulus, conditioning depolarization produced a large STP of Ca response amplitudes. These data suggest that transient upregulation of postsynaptic IP(3)-gated Ca signaling constitutes a novel form of short-term synaptic plasticity.
机译:已建议持续约100 s的突触可塑性充当神经信息的临时缓冲区。 Batchelor和Garthwaite(1997)报道了一个这样的例子,他们发现,由小脑平行纤维-Purkinje细胞突触的突发刺激产生的慢速代谢型谷氨酸受体1(mGluR1)诱发的EPSP可以通过以下条件刺激来增强:预先激活攀岩纤维突触(或注入去极化电流),最多延迟90 s。跨越这个时间间隔的信号的分子基础是什么?在这里,我们显示了由平行纤维爆裂测试刺激诱发的由mGluR1诱发的慢速EPSC显示了类似形式的短期增强(mGluR1-STP),当平行纤维爆裂被外源性压力脉冲代替时,也观察到此现象mGluR1激动剂。 Ca成像实验表明,调节去极化后的几秒钟内,胞质Ca水平会恢复到基线水平,这表明这不能作为mGluR1-STP的基础。要测试这一假设,即肌醇-1,4,5-三磷酸(IP(3))门控的Ca释放的​​瞬时上调是此现象的基础,我们使用IP(3)的局部光解开孔来耗尽IP(3)门控的Ca商店。 IP(3)在条件性去极化和测试脉冲之间的间隔中解开,产生了对mGluR1-STP的完全阻断,对IP(3)受体用肝素的阻断也是如此。当IP(3)解封引起的Ca瞬变用作测试刺激时,调节去极化产生了Ca响应幅度的大STP。这些数据表明突触后IP(3)门控Ca信号的瞬时上调构成了短期突触可塑性的一种新型形式。

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