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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Regulation of NMDA receptors by dopamine D4 signaling in prefrontal cortex.
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Regulation of NMDA receptors by dopamine D4 signaling in prefrontal cortex.

机译:前额叶皮层中多巴胺D4信号传导对NMDA受体的调节。

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Increasing evidence has suggested that the interaction between dopaminergic and glutamatergic systems in prefrontal cortex (PFC) plays an important role in normal mental functions and neuropsychiatric disorders. In this study, we examined the regulation of NMDA-type glutamate receptors by the PFC dopamine D4 receptor (one of the principal targets of antipsychotic drugs). Application of the D4 receptor agonist PD168077 caused a reversible decrease of the NMDA receptor (NMDAR)-mediated current in acutely isolated and cultured PFC pyramidal neurons, an effect that was blocked by selective D4 receptor antagonists. Furthermore, application of PD168077 produced a potent reduction of the amplitude (but not paired-pulse ratio) of evoked NMDAR EPSCs in PFC slices. The D4 modulation of NMDA receptors in PFC involved the inhibition of protein kinase A, activation of protein phosphatase 1 and the ensuing inhibition of active Ca2+-calmodulin-dependent kinase II (CaMKII). Moreover, PD168077 reduced the surface expression of NMDARs and triggered the internalization of NMDARs in a manner dependent on CaMKII activity. These results identify a mechanistic link between D4 and NMDA receptors in PFC pyramidal neurons, suggesting that D4 receptors may play an important role in modulating synaptic plasticity and thus cognitive and emotional processes in PFC circuits.
机译:越来越多的证据表明,前额叶皮层(PFC)中的多巴胺能和谷氨酸能系统之间的相互作用在正常的精神功能和神经精神疾病中起着重要的作用。在这项研究中,我们检查了PFC多巴胺D4受体(抗精神病药物的主要靶标之一)对NMDA型谷氨酸受体的调节。 D4受体激动剂PD168077的应用导致在急性分离和培养的PFC锥体神经元中NMDA受体(NMDAR)介导的电流可逆减少,这一作用被选择性D4受体拮抗剂所阻断。此外,PD168077的使用可有效降低PFC切片中诱发的NMDAR EPSC的幅度(但不降低成对脉冲比)。 PFC中NMDA受体的D4调节涉及蛋白激酶A的抑制,蛋白磷酸酶1的激活以及对活性Ca2 +-钙调蛋白依赖性激酶II(CaMKII)的抑制。此外,PD168077降低了NMDAR的表面表达并以依赖于CaMKII活性的方式触发了NMDAR的内在化。这些结果确定了PFC锥体神经元中D4和NMDA受体之间的机制联系,表明D4受体可能在调节突触可塑性以及因此在PFC回路中的认知和情感过程中起重要作用。

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