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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Presynaptic initiation by action potentials of retrograde signals in developing neurons.
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Presynaptic initiation by action potentials of retrograde signals in developing neurons.

机译:发育中神经元中逆行信号的动作电位引起的突触前启动。

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摘要

Until recently, the only means by which electrical activity was believed to initiate retrograde signals was via postsynaptic events: modulated synthesis or release of trophic factors. We have evidence in chick embryos for a presynaptic initiation of retrograde signals from the retina to the isthmo-optic nucleus, which is known to undergo 55% neuron death between embryonic days 12 and 17 and to become laminated during this period. Intraocular injections of saxitoxin just before embryonic day 14 reduce neuron death and prevent lamination in the isthmo-optic nucleus within as few as 6 hr. We show that these rapid effects are attributable to the direct action of saxitoxin on the isthmo-optic terminals. Alternative possibilities, such as an indirect effect via the target cells, are ruled out by control experiments. Normally, action potentials may lead to a chain of second messenger events in the axon terminal that is signaled retrogradely via the transport of a long-lived second messenger.
机译:直到最近,据信电活动引发逆行信号的唯一方法是通过突触后事件:调节的合成或营养因子的释放。我们在雏鸡胚胎中有证据表明,从视网膜到地峡光核的突触前突触开始引发,已知该信号在胚胎的第12天和第17天之间会经历55%的神经元死亡,并在此期间被层压。胚胎第14天前眼内注射saxitoxin可以减少神经元死亡,并能在短短6个小时内防止等视神经核的层积。我们表明,这些迅速的影响可归因于沙毒素在等温末端上的直接作用。对照实验排除了其他可能性,例如通过靶细胞的间接作用。通常,动作电位可能会导致轴突末端发生一连串第二信使事件,这是通过长寿第二信使的传输而逆行地发出的。

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