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首页> 外文期刊>Neurobiology of learning and memory >Purinergic receptor- and gap junction-mediated intercellular signalling as a mechanism of heterosynaptic metaplasticity
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Purinergic receptor- and gap junction-mediated intercellular signalling as a mechanism of heterosynaptic metaplasticity

机译:嘌呤能受体和间隙连接介导的细胞间信号转导为异突触代谢的机制。

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摘要

Synaptic plasticity is subject to activity-dependent long-term modification (metaplasticity). We have recently described a novel form of heterosynaptic metaplasticity in hippocampal CA1, whereby 'priming' activity at one set of synapses confers a metaplastic state that inhibits subsequent LTP both within and between dendritic compartments. Here, we investigated the roles of purinergic signalling and gap junctions in mediating this long-distance communication between synapses. We found that the heterosynaptic metaplasticity requires the hydrolysis of extracellular ATP to adenosine, and activation of adenosine A2, but not A1 receptors. The metaplasticity was also blocked by the non-selective gap junction blockers carbenoxolone and meclofenamic acid, and by a connexin43-specific mimetic peptide. These results indicate that an intercellular signalling cascade underlies the long-distance communication required for this form of metaplasticity.
机译:突触可塑性受到活动依赖的长期修饰(可塑性)的影响。我们最近描述了一种新形式的海马CA1中的突触异型可塑性,其中一组突触的“启动”活性赋予了一种可塑状态,该状态抑制了随后的LTP在树突室内和之间。在这里,我们调查了嘌呤能信号和间隙连接在介导突触之间这种长距离通讯中的作用。我们发现异质突触的可塑性需要细胞外ATP水解为腺苷,并激活腺苷A2,而不是A1受体。非选择性的间隙连接阻滞剂羧苄索隆和甲氧芬那酸,以及连接蛋白43特异性模拟肽也可阻止其可塑性。这些结果表明,细胞间信号传导级联是这种形式的可塑性所需的长途通信的基础。

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