首页> 外文OA文献 >Activation of 5-HT2A/C Receptors Counteracts 5-HT1A Regulation of N-Methyl-D-aspartate Receptor Channels in Pyramidal Neurons of Prefrontal Cortex*
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Activation of 5-HT2A/C Receptors Counteracts 5-HT1A Regulation of N-Methyl-D-aspartate Receptor Channels in Pyramidal Neurons of Prefrontal Cortex*

机译:5-HT2A / C受体的激活抵消了前额叶皮层锥体神经元中N-甲基-D-天冬氨酸受体通道的5-HT1A调节*

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摘要

Abnormal serotonin-glutamate interaction in prefrontal cortex (PFC) is implicated in the pathophysiology of many mental disorders, including schizophrenia and depression. However, the mechanisms by which this interaction occurs remain unclear. Our previous study has shown that activation of 5-HT1A receptors inhibits N-methyl-d-aspartate (NMDA) receptor (NMDAR) currents in PFC pyramidal neurons by disrupting microtubule-based transport of NMDARs. Here we found that activation of 5-HT2A/C receptors significantly attenuated the effect of 5-HT1A on NMDAR currents and microtubule depolymerization. The counteractive effect of 5-HT2A/C on 5-HT1A regulation of synaptic NMDAR response was also observed in PFC pyramidal neurons from intact animals treated with various 5-HT-related drugs. Moreover, 5-HT2A/C stimulation triggered the activation of extracellular signal-regulated kinase (ERK) in dendritic processes. Inhibition of the β-arrestin/Src/dynamin signaling blocked 5-HT2A/C activation of ERK and the counteractive effect of 5-HT2A/C on 5-HT1A regulation of NMDAR currents. Immunocytochemical studies showed that 5-HT2A/C treatment blocked the inhibitory effect of 5-HT1A on surface NR2B clusters on dendrites, which was prevented by cellular knockdown of β-arrestins. Taken together, our study suggests that serotonin, via 5-HT1A and 5-HT2A/C receptor activation, regulates NMDAR functions in PFC neurons in a counteractive manner. 5-HT2A/C, by activating ERK via the β-arrestin-dependent pathway, opposes the 5-HT1A disruption of microtubule stability and NMDAR transport. These findings provide a framework for understanding the complex interactions between serotonin and NMDARs in PFC, which could be important for cognitive and emotional control in which both systems are highly involved.
机译:前额叶皮层(PFC)中5-羟色胺-谷氨酸相互作用异常与许多精神疾病的病理生理有关,包括精神分裂症和抑郁症。但是,这种相互作用发生的机制仍不清楚。我们以前的研究表明,5-HT1A受体的激活通过破坏基于微管的NMDAR转运而抑制PFC锥体神经元中的N-甲基-d-天冬氨酸(NMDA)受体(NMDAR)电流。在这里,我们发现5-HT2A / C受体的激活显着减弱了5-HT1A对NMDAR电流和微管解聚的影响。在使用各种5-HT相关药物治疗的完整动物的PFC锥体神经元中,也观察到了5-HT2A / C对5-HT1A调节突触NMDAR反应的反作用。此外,5-HT2A / C刺激在树突状过程中触发了细胞外信号调节激酶(ERK)的激活。抑制β-arrestin/ Src / dynamin信号传导可阻断ERK的5-HT2A / C激活,并阻断5-HT2A / C对5-HT1A调节NMDAR电流的反作用。免疫细胞化学研究表明,5-HT2A / C处理可阻断5-HT1A对树突表面NR2B簇的抑制作用,这可通过β-arrestin的细胞敲除来阻止。两者合计,我们的研究表明5-羟色胺通过5-HT1A和5-HT2A / C受体激活,以相反的方式调节PFC神经元中的NMDAR功能。 5-HT2A / C通过经由β-arrestin依赖性途径激活ERK,反对5-HT1A破坏微管稳定性和NMDAR转运。这些发现为理解5-羟色胺和PDAR中NMDAR之间的复杂相互作用提供了一个框架,这对于高度参与这两个系统的认知和情绪控制可能非常重要。

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