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Presynaptic T-Type Ca²⁺ Channels Modulate Dendrodendritic Mitral–Mitral and Mitral–Periglomerular Connections in Mouse Olfactory Bulb

机译:突触前T型Ca 2+通道调节小鼠嗅球中的树突状二尖瓣二尖瓣和二尖瓣 - 小脑连接

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摘要

Mitral cells express low-voltage activated Cav3.3 channels on their distal apical tuft dendrites (McKay et al., 2006; Johnston and Delaney, 2010). They also discharge Na -dependent dendritic action potentials and release glutamate from these dendrites. Around resting membrane potentials, between 65 and 50 mV, Cav3.x channels are a primary determinant of cytoplasmic [Ca 2 ]. In this study using C57 mice, we present evidence that subthreshold Cav3.x-mediated Ca 2 influx modulates action potential evoked transmitter release and directly drives asynchronous release from distal tuft dendrites. Presynaptic hyperpolarization and selective block of Cav3.x channels with Z941 (Tringham et al., 2012) reduce mitral-to-mitral EPSP amplitude, increase the coefficient of variation of EPSPs, and increase paired-pulse ratios, consistent with a reduced probability of transmitter release. Both hyperpolarization and Cav3.x channel blockade reduce steady-state cytoplasmic [Ca 2 ] in the tuft dendrite without reducing action potential evoked Ca 2 influx, suggesting that background [Ca 2 ] modulates evoked release. We demonstrate that Cav3.x-mediated Ca 2 influx from even one mitral cell at membrane potentials between 65 and 50 mV is sufficient to produce feedback inhibition from periglomerular neurons. Deinactivation of Cav3.x channels by hyperpolarization increases T-type Ca 2 influx upon repolarization and increases feedback inhibition to produce subthreshold modulation of the mitral-periglomerular reciprocal circuit.
机译:二尖瓣细胞在其远端顶端簇状树突上表达低压激活的Cav3.3通道(McKay等,2006; Johnston和Delaney,2010)。它们还释放Na依赖性树突动作电位,并从这些树突中释放谷氨酸。在静息膜电位附近,介于65和50 mV之间,Cav3.x通道是细胞质[Ca 2]的主要决定因素。在这项使用C57小鼠的研究中,我们提供了证据,表明亚阈Cav3.x介导的Ca 2内流调节动作电位诱发的递质释放,并直接驱动远端簇绒树突的异步释放。带有Z941的突触前超极化和Cav3.x通道的选择性阻滞(Tringham et al。,2012)降低了二尖瓣到二尖瓣的EPSP幅度,增加了EPSP的变异系数,并增加了成对脉冲比率,与发射器释放。超极化和Cav3.x通道阻滞均能降低簇状树突中的稳态细胞质[Ca 2]而不降低诱发Ca 2涌入的动作电位,这表明背景[Ca 2]调节诱发的释放。我们证明,Cav3.x介导的Ca 2甚至从一个二尖瓣细胞流入膜电位在65和50 mV之间,足以产生来自肾小球周围神经元的反馈抑制。通过超极化使Cav3.x通道失活会增加重新极化时的T型Ca 2流入量,并增加反馈抑制作用,以产生二尖瓣-肾小结向回回路的亚阈值调制。

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