首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Plasticity of first-order sensory synapses: interactions between homosynaptic long-term potentiation and heterosynaptically evoked dopaminergic potentiation.
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Plasticity of first-order sensory synapses: interactions between homosynaptic long-term potentiation and heterosynaptically evoked dopaminergic potentiation.

机译:一阶感觉突触的可塑性:同源突触的长期增强和异突触诱发的多巴胺能增强之间的相互作用。

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摘要

Persistent potentiations of the chemical and electrotonic components of the eighth nerve (NVIII) EPSP recorded in vivo in the goldfish reticulospinal neuron, the Mauthner cell, can be evoked by afferent tetanization or local dendritic application of an endogenous transmitter, dopamine (3-hydroxytyramine). These modifications are attributable to the activation of distinct intracellular kinase cascades. Although dopamine-evoked potentiation (DEP) is mediated by the cAMP-dependent protein kinase (PKA), tetanization most likely activates a Ca2+-dependent protein kinase via an increased intracellular Ca2+ concentration. We present evidence that the eighth nerve tetanus that induces LTP does not act by triggering dopamine release, because it is evoked in the presence of a broad spectrum of dopamine antagonists. To test for interactions between these pathways, we applied the potentiating paradigms sequentially. When dopamine was applied first, tetanization produced additional potentiation of the mixed synaptic response, but when the sequence was reversed, DEP was occluded, indicating that the synapses potentiated by the two procedures belong to the same or overlapping populations. Experiments were conducted to determine interactions between the underlying regulatory mechanisms and the level of their convergence. Inhibiting PKA does not impede tetanus-induced LTP, and chelating postsynaptic Ca2+ with BAPTA does not block DEP, indicating that the initial steps of the induction processes are independent. Pharmacological and voltage-clamp analyses indicate that the two pathways converge on functional AMPA/kainate receptors for the chemically mediated EPSP and gap junctions for the electrotonic component or at intermediaries common to both pathways. A cellular model incorporating these interactions is proposed on the basis of differential modulation of synaptic responses via receptor-protein phosphorylation.
机译:在金鱼网状棘神经元Mauthner细胞中体内记录的第八神经(NVIII)EPSP的持久化学增强作用可以通过内源性递质多巴胺(3-羟酪胺)进行tetanization或局部树状应用来诱发。这些修饰归因于不同的细胞内激酶级联反应的激活。尽管多巴胺诱发的增强作用(DEP)由cAMP依赖性蛋白激酶(PKA)介导,但tetanization最有可能通过增加细胞内Ca2 +浓度来激活Ca2 +依赖性蛋白激酶。我们提供的证据表明,诱导LTP的第八条神经破伤风不会通过触发多巴胺释放来起作用,因为它是在存在多种多巴胺拮抗剂的情况下诱发的。为了测试这些途径之间的相互作用,我们依次应用了增强范式。第一次使用多巴胺时,破伤风化作用会进一步增强混合突触反应,但是当序列反转时,DEP会被闭塞,这表明通过两种方法增强的突触属于相同或重叠的种群。进行了实验以确定潜在的调节机制及其收敛水平之间的相互作用。抑制PKA不会阻止破伤风诱导的LTP,并且用BAPTA螯合突触后Ca2 +不会阻断DEP,这表明诱导过程的初始步骤是独立的。药理学和电压钳分析表明,这两种途径在化学介导的EPSP的功能性AMPA /海藻酸酯受体和电子成分的缝隙连接处或在这两种途径共有的中介处汇合。在经由受体-蛋白质磷酸化的突触反应的差异调节的基础上,提出了包含这些相互作用的细胞模型。

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