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Pharmacological modulation of AMPA receptor phosphorylation by dopamine and muscarinic receptor agents in the rat medial prefrontal cortex

机译:大鼠内侧前额叶皮层中多巴胺和毒蕈碱受体试剂的AMPA受体磷酸化的药理调节

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Abstract Two key transmitters in the medial prefrontal cortex (mPFC), dopamine and acetylcholine, are believed to interact with each other to modulate local glutamatergic transmission, although molecular mechanisms underlying their crosstalk are poorly understood. Here we investigated effects of pharmacological manipulations of dopamine and muscarinic receptors on phosphorylation of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors in the adult rat mPFC in vivo. We found that an agonist selective for G αs -coupled dopamine D 1 receptors, SKF81297, increased AMPA receptor GluA1 subunit phosphorylation at a protein kinase A-sensitive site (S845), while SKF81297 had no effect on GluA1 phosphorylation at S831. An agonist for G αi/o -coupled dopamine D 2 receptors, quinpirole, also increased S845 but not S831 phosphorylation. When coinjected, the two agonists induced an additive increase in S845 phosphorylation. The D 1 receptor antagonist SCH23390 blocked the SKF81297/quinpirole-stimulated S845 phosphorylation. The D 2 antagonist eticlopride also partially blocked S845 responses to SKF81297/quinpirole. VU0152100, a positive allosteric modulator selective for G αi/o -coupled muscarinic M 4 receptors, reduced the S845 phosphorylation induced by SKF81297 and quinpirole injected alone or together. In contrast, coinjection of subthreshold doses of tropicamide, an M 4 antagonist, and SKF81297 facilitated S845 phosphorylation. Additionally, coadministered SFK81297 and quinpirole increased the abundance of mPFC GluA1 at extrasynaptic sites. These data reveal that both D 1 and D 2 receptors upregulate GluA1 phosphorylation in mPFC neurons probably via a direct and indirect mechanism, respectively. The indirect mechanism involves M 4 receptors which generally counteract the effect of dopamine on GluA1 phosphorylation.
机译:摘要两种钥匙发射器中的内侧前额定皮质(MPFC),多巴胺和乙酰胆碱,彼此相互作用以调节局部谷氨酸盐透射率,尽管其串扰下面的分子机制很差。在这里,我们研究了多巴胺和毒蕈碱受体对体内成体大鼠MPFC中α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体的磷酸化对成年大鼠MPFC的影响。我们发现,用于Gαs的激动剂选择性-cuoupled多巴胺D 1受体,SKF81297增加了蛋白激酶A敏感性位点的AMPA受体Glua1亚基磷酸化,而SKF81297对S831的Glua1磷酸化没有影响。用于Gαi/ O -cuoupled的多巴胺D 2受体,喹罗lo的激动剂,也增加了S845但不是S831磷酸化。在互联时,两个激动剂诱导S845磷酸化添加剂增加。 D 1受体拮抗剂SCH23390阻断SKF81297 / quinpirole刺激的S845磷酸化。 D 2拮抗剂Iticloprize还部分地阻断了对SKF81297 / quinpirole的S845响应。 Vu0152100,一种针对Gαi/ O -coupled毒蕈碱M4受体选择性的正变形调节剂,降低了SKF81297和单独注射的喹啉诱导的S845磷酸化。相比之下,亚阈值剂量的对象剂量,M4拮抗剂和SKF81297促进S845磷酸化。另外,共同的SFK81297和喹啉基于突触位点的MPFC glua1的丰度增加。这些数据表明,D 1和D 2受体均通过直接和间接机制分别上调MPFC神经元的Glua1磷酸化。间接机制涉及M4受体,其通常抵消多巴胺对Glua1磷酸化的影响。

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