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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >In hippocampal oriens interneurons anti-Hebbian long-term potentiation requires cholinergic signaling via α7 nicotinic acetylcholine receptors
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In hippocampal oriens interneurons anti-Hebbian long-term potentiation requires cholinergic signaling via α7 nicotinic acetylcholine receptors

机译:在海马中枢神经元中,抗-Hebbian长期增强作用需要通过α7烟碱乙酰胆碱受体的胆碱能信号传导

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In the hippocampus, at excitatory synapses between principal cell and oriens/alveus (O/A) interneurons, a particular form of NMDAindependent long-term synaptic plasticity (LTP) has been described (Lamsa et al., 2007). This type of LTP occurs when presynaptic activation coincides with postsynaptic hyperpolarization. For this reason it has been named "anti-Hebbian" to distinguish from the classical Hebbian type of associative learning where presynaptic glutamate release coincides with postsynaptic depolarization. The different voltage dependency of LTP induction is thought to be mediated by calcium-permeable (CP) AMPA receptors that, due to polyamine-mediated rectification, favor calcium entry at hyperpolarized potentials. Here, we report that the induction of this form of LTP needs CP-α7 nicotinic acetylcholine receptors (nAChRs) that, like CP-AMPARs, exhibit a strong inward rectification because of polyamine block at depolarizing potentials. We found that high-frequency stimulation of afferent fibers elicits synaptic currents mediated by α7 nAChRs. Hence, LTP was prevented by α7 nAChR antagonists dihydro-β-erythroidine and methyllycaconitine (MLA) and was absent in α7 -/- mice. In addition, in agreement with previous observations (Le Duigou and Kullmann, 2011), in a minority of O/A interneuronsin MLA-treated hippocampal slices from WT animals and α7 -/- mice, a form of LTP probably dependent on the activation of group I metabotropic glutamate receptors was observed. These data indicate that, in O/A interneurons, anti-Hebbian LTP critically depends on cholinergic signaling via α7 nAChR. This may influence network oscillations and information processing.
机译:在海马体中,在主细胞与Oriens /肺泡(O / A)间神经元之间的兴奋性突触中,已经描述了一种特定形式的NMDA依赖性长期突触可塑性(LTP)(Lamsa等,2007)。当突触前激活与突触后超极化同时发生时,会发生这种LTP。因此,它被命名为“反希伯来人”,以区别于经典的希伯来人联想学习型,后者突触前谷氨酸释放与突触后去极化相吻合。 LTP诱导的不同电压依赖性被认为是由钙可渗透(CP)AMPA受体介导的,由于多胺介导的整流作用,钙可渗透(CP)AMPA受体有利于钙在超极化电势下进入。在这里,我们报告说,这种形式的LTP的诱导需要CP-α7烟碱型乙酰胆碱受体(nAChRs),像CP-AMPARs一样,由于去极化电位上的多胺阻滞而表现出强烈的向内整流。我们发现传入纤维的高频刺激引起由α7nAChRs介导的突触电流。因此,α7nAChR拮抗剂二氢-β-类胡萝卜素和甲基甘可尼丁(MLA)可预防LTP,而在α7-/-小鼠中则不存在。此外,与先前的观察结果一致(Le Duigou和Kullmann,2011),在少数O / A神经元经MLA处理的野生动物和α7-/-小鼠的海马切片中,LTP的一种形式可能依赖于LTP的激活。观察到I组代谢型谷氨酸受体。这些数据表明,在O / A中间神经元中,抗希伯安LTP关键取决于通过α7nAChR产生的胆碱能信号。这可能会影响网络振荡和信息处理。

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