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首页> 外文期刊>Journal of Neuroscience Research >Calcium influx via L-type voltage-gated channels mediates the delayed, elevated increases in steady-state c-fos mRNA levels in cerebellar granule cells exposed to excitotoxic levels of glutamate.
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Calcium influx via L-type voltage-gated channels mediates the delayed, elevated increases in steady-state c-fos mRNA levels in cerebellar granule cells exposed to excitotoxic levels of glutamate.

机译:通过L型电压门控通道的钙流入介导了暴露于谷氨酸兴奋性毒性水平的小脑颗粒细胞中稳态c-fos mRNA水平的延迟升高升高。

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The altered kinetics of steady-state c-fos mRNA production in cultured cerebellar granule cells under excitotoxic conditions was investigated in neurons subjected to depolarising stimuli, namely, high KCl and L-glutamate (Glu), in which Ca2+ influx occurs by differing routes. Increases in intracellular-free calcium levels ([Ca2+]i) stimulated by nontoxic or toxic levels of Glu were blocked by selective N-methyl-D-aspartate (NMDA) receptor antagonism; were blocked only partially by the L-type channel blocker, nifedipine; and were unaffected by alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionate (AMPA)/kainate receptor antagonists. Glu-induced cell death was prevented only by NMDA receptor blockade. Exposure of cells to nontoxic levels of Glu resulted in a transient increase in c-fos mRNA levels, whereas an excitotoxic dose produced a delay in the appearance of c-fos mRNA but a subsequent, progressive, and sustained (>4 hr) increase. An excitotoxic dose of Glu in combination with either nifedipine or selective NMDA receptor antagonists resulted in the normal, transient increase of c-fos mRNA levels. Chronic exposure to 55 mM KCl caused no cytotoxicity, although it resulted in a delayed, elevated increase in c-fos mRNA levels that was unaffected by NMDA receptor blockade but reverted to the normal, transient profile of c-fos mRNA formation when it was coadministered with nifedipine. The KCl-induced increase in [Ca2+]i levels was inhibited dramatically by nifedipine but was unaffected by any of the ionotropic Glu receptor antagonists. The results support the notion that the appearance of a delayed but elevated increase in steady-state c-fos mRNA levels following exposure to excitotoxic doses of Glu is mediated specifically by calcium influx via L-type voltage-gated channels.
机译:在受到去极化刺激的神经元中,即高KCl和L-谷氨酸(Glu)的神经元中,研究了在兴奋性毒性条件下培养的小脑颗粒细胞中稳态c-fos mRNA产生的动力学变化,其中Ca2 +的流入通过不同的途径发生。选择性的N-甲基-D-天冬氨酸(NMDA)受体拮抗作用阻止了Glu的无毒或有毒水平刺激的细胞内游离钙水平([Ca2 +] i)的增加;仅被L型通道阻滞剂硝苯地平部分阻滞;且不受丙酸α-氨基-3-羟基-5-羟基-5-甲基-4-异恶唑(AMPA)/海藻酸酯受体拮抗剂的影响。 Glu诱导的细胞死亡只能通过NMDA受体阻滞来预防。将细胞暴露于无毒水平的Glu会导致c-fos mRNA水平短暂增加,而兴奋性毒性剂量会延迟c-fos mRNA的出现,但随后会持续,持续(> 4 hr)增加。兴奋性剂量的Glu与硝苯地平或选择性NMDA受体拮抗剂合用会导致c-fos mRNA水平正常,短暂增加。长期暴露于55 mM KCl不会引起细胞毒性,尽管它导致c-fos mRNA水平的延迟升高升高,这不受NMDA受体阻滞的影响,但在共同给药时恢复为c-fos mRNA形成的正常,短暂状态硝苯地平。硝苯地平可显着抑制KCl诱导的[Ca2 +] i水平增加,但不受任何离子型Glu受体拮抗剂的影响。结果支持了这样的观点,即暴露于兴奋性毒性剂量的Glu后,稳态c-fos mRNA水平出现延迟但升高的升高的现象特别是通过L型电压门控通道的钙流介导的。

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