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Modulation of Synaptic Plasticity by Antimanic Agents: The Role of AMPA Glutamate Receptor Subunit 1 Synaptic Expression

机译:通过抗躁狂药调节突触可塑性:AMPA谷氨酸受体亚基1突触表达的作用。

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摘要

Increasing data suggest that impairments of cellular plasticity underlie the pathophysiology of bipolar disorder. In this context, it is noteworthy that AMPA glutamate receptor trafficking regulates synaptic plasticity, effects mediated by signaling cascades, which are targets for antimanic agents. The present studies were undertaken to determine whether two clinically effective, but structurally highly dissimilar, antimanic agents lithium and valproate regulate synaptic expression of AMPA receptor subunit glutamate receptor 1 (GluR1). Chronic (but not acute) treatment of rats with therapeutically relevant concentrations of lithium or valproate reduced hippocampal synaptosomal GluR1 levels. The reduction in synaptic GluR1 by lithium and valproate was attributable to a reduction of surface GluR1 distribution onto the neuronal membrane as demonstrated by three independent assays in cultured hippocampal neurons. Furthermore, these agents induced a decrease in GluR1 phosphorylation at a specific PKA site (GluR1p845), which is known to be critical for AMPA receptor insertion. Sp-cAMP treatment reversed the attenuation of phosphorylation by lithium and valproate and also brought GluR1 back to the surface, suggesting that phosphorylation of GluR1p845 is involved in the mechanism of GluR1 surface attenuation. In addition, GluR1p845 phosphorylation also was attenuated in hippocampus from lithium- or valproate-treated animals in vivo. In contrast, imipramine, an antidepressant that can trigger manic episodes, increased synaptic expression of GluR1 in hippocampus in vivo. These studies suggest that regulation of glutamatergically mediated synaptic plasticity may play a role in the treatment of bipolar disorder and raise the possibility that agents more directly affecting synaptic GluR1 may represent novel therapies for this devastating illness.
机译:越来越多的数据表明,细胞可塑性的损害是双相情感障碍的病理生理基础。在这种情况下,值得注意的是,AMPA谷氨酸受体的运输调节突触可塑性,这是由信号抗级联反应介导的信号级联介导的。进行本研究以确定两种临床有效但结构上高度不同的抗躁狂药锂和丙戊酸盐是否能调节AMPA受体谷氨酸受体1(GluR1)的突触表达。用治疗相关浓度的锂或丙戊酸盐对大鼠进行慢性(但非急性)治疗可降低海马突触体GluR1水平。锂和丙戊酸引起的突触GluR1的减少归因于表面GluR1在神经元膜上的分布减少,这是通过在培养的海马神经元中进行的三个独立测定所证实的。此外,这些试剂在特定的PKA位点(GluR1p845)诱导了GluR1磷酸化的降低,这对AMPA受体的插入至关重要。 Sp-cAMP处理逆转了锂和丙戊酸对磷酸化作用的减弱,并且还使GluR1返回表面,这表明GluR1p845的磷酸化参与了GluR1表面衰减的机制。此外,体内锂或丙戊酸盐治疗的动物海马中的GluR1p845磷酸化作用也减弱。相反,可以触发躁狂发作的抗抑郁药丙咪嗪在体内增强了海马中GluR1的突触表达。这些研究表明,调节谷氨酸介导的突触可塑性可能在双相情感障碍的治疗中发挥作用,并增加了更直接影响突触GluR1的药物可能代表这种毁灭性疾病的新疗法的可能性。

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