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Biphasic modulation of synaptic transmission by hypertonicity at the embryonic Drosophila neuromuscular junction

机译:胚胎果蝇神经肌肉连接处高渗对突触传递的双相调节

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摘要

Puff-application of hypertonic saline (sucrose added to external saline) causes a transient increase in the frequency of spontaneous miniature synaptic currents (mSCs) at the neuromuscular junctions of Drosophila embryos. The frequency gradually returns to pre-application levels. External Ca2+ is not needed for this response, but it may modify it. At 50 mm added sucrose, for example, enhanced spontaneous release was observed only in the presence of external Ca2+, suggesting that Ca2+ augments the response. In a high-K+ solution, in which the basal mSC frequency was elevated, higher sucrose concentrations produced an increase in mSC frequency that was followed (during and after the hypertonic exposure) by depression, with the magnitude of both effects increasing with hypertonicity between 100 and 500 mm. Evoked release by nerve stimulation showed only depression in response to hypertonicity. We do not believe that the depression of spontaneous or evoked release can be explained by the depletion of releasable quanta, however, since the frequency of quantal release did not reach levels compatible with this explanation and the enhancement and depression could be obtained independent of one another. In a mutant lacking neuronal synaptobrevin, only the depression of mSC frequency was induced by hypertonicity. Conversely, only the enhancing effect was observed in wild-type embryos when the mSC frequency was elevated with forskolin in Ca2+-free saline. In cultured embryonic Drosophila neurons, Ca2+ signals that were induced by high K+ and detected by Fura-2, were reduced by hypertonicity, suggesting that the depressing response is due to a direct effect of hypertonicity on Ca2+ influx.
机译:吹高渗盐水(将蔗糖添加到外部盐水中)会导致果蝇胚胎神经肌肉接头处的自发微型突触电流(mSCs)的频率瞬时增加。频率逐渐恢复到应用前的水平。此响应不需要外部Ca 2 + ,但可以对其进行修改。例如,在添加50 mm蔗糖的情况下,仅在外部Ca 2 + 存在下才观察到自发释放增强,表明Ca 2 + 增强了反应。在基础mSC频率升高的高K + 溶液中,较高的蔗糖浓度导致mSC频率增加,随后(在高渗暴露期间和之后)抑郁症伴有幅度的增加。高渗性在100到500 mm之间时,这两种作用都增加。由神经刺激引起的释放仅显示出对高渗性的抑制。我们不认为可以通过释放可释放的量子来解释自发性或诱发性释放的抑制,但是,因为定量释放的频率未达到与该解释兼容的水平,并且增强和抑制可以彼此独立地获得。在缺乏神经元突触素的突变体中,高渗仅诱导mSC频率降低。相反,当福司可林在不含Ca 2 + 的盐水中提高mSC频率时,仅在野生型胚胎中观察到了增强作用。在培养的果蝇胚胎神经元中,高渗降低了由高K + 诱导并由Fura-2检测到的Ca 2 + 信号,这表明抑制反应是由于高渗对Ca 2 + 流入的直接影响。

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