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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Desensitizing glutamate receptors shape excitatory synaptic inputs to tiger salamander retinal ganglion cells.
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Desensitizing glutamate receptors shape excitatory synaptic inputs to tiger salamander retinal ganglion cells.

机译:脱敏谷氨酸受体塑造老虎tiger视网膜神经节细胞的兴奋性突触输入。

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摘要

AMPA/kainate (KA) receptors mediate a component of ganglion cell excitatory postsynaptic currents (EPSCs). We investigated whether desensitization at these receptors contribute to the shape of transient EPSCs in ON-OFF ganglion cells. Whole-cell, voltage-clamp recordings were made from ganglion cells in the retinal slice or in isolation. EPSCs were evoked by either stimulating the slice with light or puffing K+ at the outer plexiform layer (OPL). The AMPA/KA receptor-mediated component of the EPSCs was isolated by including NMDA receptor antagonists in the bath. Strychnine and picrotoxin blocked inhibitory inputs. In isolated ganglion cells, cyclothiazide (10 microM), which blocks desensitization in non-NMDA receptors, enhanced both the amplitude and the duration of currents evoked by puffs of AMPA or glutamate. EPSCs evoked by K(+)-puffs in the OPL were also enhanced by cyclothiazide (30 microM). When AMPA/KA receptors were blocked with NBQX (10 microM), no enhancement of the EPSCs by cyclothiazide was observed, indicating that cyclothiazide did not act presynaptically. Cyclothiazide also enhanced the amplitude and duration of both the ON and OFF light-evoked (L-) EPSCs recorded in ON-OFF ganglion cells. Current-voltage relationships showed the enhancement was not voltage dependent. When control and enhanced responses where normalized, it was observed that the rate of desensitization of both the ON and OFF L-EPSCs was decreased by cyclothiazide. Cyclothiazide selectively enhanced the AMPA/KA receptor-mediated component of ganglion cells EPSCs, suggesting that desensitization of AMPA/KA receptors shape transient L-EPSCs.
机译:AMPA /海藻酸盐(KA)受体介导神经节细胞兴奋性突触后电流(EPSC)的一部分。我们调查了在这些受体上的脱敏是否有助于ON-OFF神经节细胞中瞬时EPSC的形状。全细胞电压钳记录是由视网膜切片中或分离的神经节细胞制成的。通过用光刺激切片或在外部丛状层(OPL)处喷出K +来诱发EPSC。通过在浴中加入NMDA受体拮抗剂来分离EPSC的AMPA / KA受体介导的成分。士的宁和微毒素阻断了抑制性输入。在分离的神经节细胞中,阻断非NMDA受体的脱敏的环噻嗪(10 microM)增强了AMPA或谷氨酸的抽吸引起的电流幅度和持续时间。环噻嗪(30 microM)还增强了OPL中由K(+)抽吸引起的EPSC。当AMPQ / KA受体被NBQX(10 microM)阻断时,未观察到环噻嗪增强EPSC,表明环噻嗪没有先突触作用。环乙肼还增强了ON-OFF神经节细胞中记录的ON和OFF诱发的(L-)EPSC的幅度和持续时间。电流-电压关系显示增强与电压无关。当对照和增强的反应正常化时,观察到环噻嗪降低了ON和OFF L-EPSCs的脱敏率。环丙磺胺选择性地增强了神经节细胞EPSC的AMPA / KA受体介导的成分,这表明AMPA / KA受体的脱敏作用可形成瞬时L-EPSC。

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