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首页> 外文期刊>Neuropharmacology >D2 receptor-mediated miRNA-143 expression is associated with the effects of antipsychotic drugs on phencyclidine-induced schizophrenia-related locomotor hyperactivity and with Neuregulin-1 expression in mice
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D2 receptor-mediated miRNA-143 expression is associated with the effects of antipsychotic drugs on phencyclidine-induced schizophrenia-related locomotor hyperactivity and with Neuregulin-1 expression in mice

机译:D2受体介导的miRNA-143表达与抗精神病药诱导的精神分裂症相关的精神分裂症相关运动过度活跃和在小鼠中的Neuregulin-1表达有关

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摘要

Non-coding RNA molecules such as miRNAs have emerged as critical regulators of neuronal functions. The present study investigates a role for miRNA-143, a highly conserved miRNA, in locomotorhyperactivity induced bythe psychotomimetic phencyclidine (PCP), a non-selective antagonist of the N-methyl-D-aspartate (NMDA) glutamate receptor. Following acute PCP administration to mice, the content of miRNA-143 was reduced in plasma, prefrontal cortex (PFC) and hippocampus, reaching a minimum after 2 h. The antipsychotics haloperidol and clozapine attenuated hyperlocomotion and the decrease in miR-143 expression induced by PCP, as did the selective D2 dopamine receptor antagonist eticlopride but not the selective D1 antagonist SCH23390. To further confirm D2 receptor-mediated miRNA-143 expression, HT-22 neuronal cell line and primary cortical cultured neuronswere studied. Stimulation of D2 receptors with the selective D2 receptor agonist quinpirole decreased expression of miRNA-143 in a time-dependent manner. This inhibition was blocked by pretreatment with eticlopride, indicating that the D2 receptor directly regulates the expression of miRNA-143. We further demonstrated that miRNA-143 directly targeted to the 3' un-translated region of neuregulin-1 (NRG1) mRNA to reduce protein expression of NRG1 in HT-22 cells and that administration of the D2 receptor agonist quinpirole to mice enhanced expression of NRG1 in PFC. The present data provide the first evidence that D2 receptors are involved in the expression ofmiRNA-143 in association with antipsychotic drug action and the developmental regulator NRG1.
机译:非编码RNA分子如MiRNA已成为神经元功能的临界调节因子。本研究研究了MiRNA-143,高度保守的miRNA,在由精神瘤相碱(PCP)诱导的当量活跃性,N-甲基-D-天冬氨酸(NMDA)谷氨酸受体的非选择性拮抗剂中的热滑动性的作用。在急性PCP给小鼠中,MiRNA-143的含量降低了血浆,前额叶皮质(PFC)和海马,在2小时后达到最低限度。抗精神病药氟哌啶醇和氯氮平减弱了PCP诱导的miR-143表达的降低,如选择性D2多巴胺受体拮抗剂Iticlindide但不是选择性D1拮抗剂SCH23390。为了进一步确认D2受体介导的miRNA-143表达,HT-22神经元细胞系和原发性皮质培养神经元进行研究。用选择性D2受体激动剂喹啉刺激D2受体以时间依赖性方式降低miRNA-143的表达。通过用甲丙烯锌预处理阻断该抑制,表明D2受体直接调节miRNA-143的表达。我们进一步证明了MiRNA-143直接靶向Neuregulin-1(NRG1)mRNA的3'未转化区域,以降低HT-22细胞中NRG1的蛋白质表达,并且将D2受体激动剂喹啉授予小鼠的表达增强的表达NRG1在PFC中。本数据提供了D2受体与抗精神病药作用和发育调节剂NRG1相关联的D2受体参与MiRNA-143的表达。

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