首页> 美国卫生研究院文献>The Journal of Neuroscience >Trophic Factor-Induced Intracellular Calcium Oscillations Are Required for the Expression of Postsynaptic Acetylcholine Receptors during Synapse Formation between Lymnaea Neurons
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Trophic Factor-Induced Intracellular Calcium Oscillations Are Required for the Expression of Postsynaptic Acetylcholine Receptors during Synapse Formation between Lymnaea Neurons

机译:在淋巴神经元之间的突触形成过程中需要营养因子诱导的细胞内钙振荡来表达突触后乙酰胆碱受体。

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摘要

Nervous system functions in all animals rely upon synaptic connectivity that is established during early development. Whereas cell–cell signaling plays a critical role in establishing synapse specificity, the involvement of extrinsic growth factors cannot, however, be undermined. We have previously demonstrated that trophic factors are required for excitatory but not inhibitory synapse formation between Lymnaea neurons. Moreover, in the absence of trophic factors, neurons from a number of species establish inappropriate inhibitory synapses, which can, however, be corrected by the addition of trophic factors. The precise site of trophic factor actions (presynaptic versus postsynaptic) and the underlying mechanisms remain, however, undefined. Here, we provide the first direct evidence that the trophic factor-mediated excitatory synapse formation involves activity-induced calcium (Ca2+) oscillations in the postsynaptic left pedal dorsal 1 (LPeD1) but not the presynaptic visceral dorsal 4 (VD4, cholinergic) neuron. These oscillations involved Ca2+ influx through voltage-gated Ca2+ channels and required receptor tyrosine kinase activity which was essential for the expression of excitatory, nicotinic acetylcholine receptors in the postsynaptic cell during synapse formation. We also demonstrate that selectively blocking the electrical activity presynaptically did not perturb trophic factor-induced synapse formation between the paired cells, whereas hyperpolarizing the postsynaptic cell prevented appropriate synaptogenesis between VD4 and LPeD1 cells. Together, our data underscore the importance of extrinsic trophic factors in regulating the electrical activity of the postsynaptic but not the presynaptic cell and that the resulting Ca2+ oscillations are essential for the expression of postsynaptic receptors during specific synapse formation.
机译:所有动物的神经系统功能都依赖于早期发育过程中建立的突触连接。尽管细胞间信号传导在建立突触特异性中起着至关重要的作用,但是不能破坏外在生长因子的参与。先前我们已经证明,营养因子是Lymnaea神经元之间兴奋性形成但不是抑制性突触形成所必需的。此外,在缺乏营养因子的情况下,来自许多物种的神经元会建立不适当的抑制突触,但是可以通过添加营养因子来纠正这种突触。营养因子作用的确切位置(突触前与突触后)和潜在机制尚不清楚。在这里,我们提供了第一个直接证据,即营养因子介导的兴奋性突触形成涉及突触后左脚踏板背侧1(LPeD1)的活动诱导的钙(Ca 2 + )振荡,而不涉及突触前内脏背侧4(VD4,胆碱能)神经元。这些振荡涉及通过电压门控的Ca 2 + 通道流入Ca 2 + 和所需的受体酪氨酸激酶活性,这对于在突触后表达兴奋性烟碱型乙酰胆碱受体至关重要突触形成过程中的细胞。我们还证明,选择性地突触前阻止电活动不会扰乱配对细胞之间营养因子诱导的突触的形成,而突触后突触细胞的超极化则阻止了VD4和LPeD1细胞之间的适当突触发生。总之,我们的数据强调了外在营养因子在调节突触后而不是突触前细胞的电活动中的重要性,并且所产生的Ca 2 + 振荡对于突触后突触后受体的表达至关重要。编队。

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