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首页> 外文期刊>The Journal of Physiology >Metabotropic glutamate receptors regulate hippocampal CA1 pyramidal neuron excitability via Ca(2) wave-dependent activation of SK and TRPC channels.
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Metabotropic glutamate receptors regulate hippocampal CA1 pyramidal neuron excitability via Ca(2) wave-dependent activation of SK and TRPC channels.

机译:代谢型谷氨酸受体调节海马CA1锥体神经元兴奋性,通过Ca(2)波依赖的SK和TRPC通道激活。

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摘要

Group I metabotropic glutamate receptors (mGluRs) play an essential role in cognitive function. Their activation results in a wide array of cellular and molecular responses that are mediated by multiple signalling cascades. In this study, we focused on Group I mGluR activation of IP3R-mediated intracellular Ca2+ waves and their role in activating Ca2+-dependent ion channels in CA1 pyramidal neurons. Using whole-cell patch-clamp recordings and high-speed Ca2+ fluorescence imaging in acute hippocampal brain slices, we show that synaptic and pharmacological stimulation of mGluRs triggers intracellular Ca2+ waves and a biphasic electrical response composed of a transient Ca2+-dependent SK channel-mediated hyperpolarization and a TRPC-mediated sustained depolarization. The generation and magnitude of the SK channel-mediated hyperpolarization depended solely on the rise in intracellular Ca2+ concentration ([Ca2+]i), whereas the TRPC channel-mediated depolarization required both a small rise in [Ca2+]i and mGluR activation. Furthermore, the TRPC-mediated current was suppressed by forskolin-induced rises in cAMP. We also show that SK- and TRPC-mediated currents robustly modulate pyramidal neuron excitability by decreasing and increasing their firing frequency, respectively. These findings provide additional evidence that mGluR-mediated synaptic transmission makes an important contribution to regulating the output of hippocampal neurons through intracellular Ca2+ wave activation of SK and TRPC channels. cAMP provides an additional level of regulation by modulating TRPC-mediated sustained depolarization that we propose to be important for stabilizing periods of sustained firing.
机译:第一组代谢型谷氨酸受体(mGluRs)在认知功能中起重要作用。它们的激活导致多种细胞和分子反应,这些反应由多个信号级联介导。在这项研究中,我们集中于IP3R介导的细胞内Ca2 +波的第一组mGluR激活及其在激活CA1锥体神经元中依赖Ca2 +的离子通道中的作用。在急性海马脑切片中使用全细胞膜片钳记录和高速Ca2 +荧光成像,我们显示mGluRs的突触和药理刺激触发细胞内Ca2 +波和由瞬时Ca2 +依赖性SK通道介导的双相电反应超极化和TRPC介导的持续去极化。 SK通道介导的超极化的发生和大小仅取决于细胞内Ca2 +浓度([Ca2 +] i)的升高,而TRPC通道介导的去极化需要[Ca2 +] i和mGluR激活均略有上升。此外,TRPC介导的电流被毛喉素诱导的cAMP升高所抑制。我们还显示,SK和TRPC介导的电流分别通过降低和增加其放电频率来强烈调节锥体神经元兴奋性。这些发现提供了额外的证据,表明mGluR介导的突触传递通过SK和TRPC通道的细胞内Ca2 +波激活对调节海马神经元的输出做出了重要贡献。 cAMP通过调节TRPC介导的持续去极化作用提供了更高的调节水平,我们认为这对于稳定持续放电的时间很重要。

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