首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Autocrine signaling by an Aplysia neurotrophin forms a presynaptic positive feedback loop
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PNAS Plus: Autocrine signaling by an Aplysia neurotrophin forms a presynaptic positive feedback loop

机译:PNAS Plus:海藻神经营养蛋白的自分泌信号形成突触前正反馈回路

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摘要

Whereas short-term plasticity is often initiated on one side of the synapse, long-term plasticity involves coordinated changes on both sides, implying extracellular signaling. We have investigated the possible signaling role of an Aplysia neurotrophin (ApNT) in facilitation induced by serotonin (5HT) at sensory-to-motor neuron synapses in culture. ApNT is an ortholog of mammalian BDNF, which has been reported to act as either an anterograde, retrograde, or autocrine signal, so that its pre- and postsynaptic sources and targets remain unclear. We now report that ApNT acts as a presynaptic autocrine signal that forms part of a positive feedback loop with ApTrk and PKA. That loop stimulates spontaneous transmitter release, which recruits postsynaptic mechanisms, and presynaptic protein synthesis during the transition from short- to intermediate-term facilitation and may also initiate gene regulation to trigger the transition to long-term facilitation. These results suggest that a presynaptic ApNT feedback loop plays several key roles during consolidation of learning-related synaptic plasticity.
机译:短期可塑性通常在突触的一侧开始,而长期可塑性则涉及到两侧的协调变化,这暗示着细胞外信号传导。我们已经研究了海鸟神经营养蛋白(ApNT)在由5-羟色胺(5HT)在文化中的感觉到运动神经突触诱导的促进中的可能的信号传导作用。 ApNT是哺乳动物BDNF的直系同源物,据报道它可作为顺行,逆行或自分泌信号,因此其突触前和突触后的来源和靶标尚不清楚。现在,我们报告ApNT充当突触前自分泌信号,与ApTrk和PKA形成正反馈回路。该循环刺激自发性递质的释放,从而在从短期促进到中期促进的过渡过程中募集突触后机制和突触前蛋白的合成,还可能启动基因调控以触发向长期促进的过渡。这些结果表明,突触前的ApNT反馈回路在巩固与学习有关的突触可塑性过程中起着关键作用。

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