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利血平化大鼠中,非竞争性NMDA受体拮抗剂对D2-多巴胺受体介导的zif 268抑制作用的增强

Potentiation of D2-dopamine receptor-mediated suppression of zif 268 by non-competitive NMDA receptor antagonists in reserpinized rats.

作者信息

Leslie C A, Jung A, Bennett J P

机构信息

Department of Psychiatric Medicine, Box 623, University of Virginia Health Systems, Charlottesville, VA 22908, USA.

出版信息

Brain Res Mol Brain Res. 1998 Aug 15;59(1):40-9. doi: 10.1016/s0169-328x(98)00132-6.

Abstract

Striatopallidal output neurons, which coexpress D2-dopamine receptors and NMDA receptors, are logically a potential site of interaction between corticostriatal glutamatergic input and dopaminergic systems. Recent hypotheses about the etiology of schizophrenia have implicated both excitatory amino acid and dopamine systems. The present study was designed to examine, in vivo, the interaction between D2-dopamine receptors and NMDA receptors in the regulation of the expression of the early immediate genes (IEGs), zif 268 and jun B, in striatopallidal neurons. We tested whether coadministration of NMDA antagonists interacted with the actions of the D2 agonist, quinpirole, on IEG expression following dopamine depletion with reserpine. When rats were pretreated with the non-competitive NMDA receptor antagonists, MK 801 (1 mg/kg) or PCP (20 mg/kg), together with quinpirole, the quinpirole reversal of reserpine induction of zif 268 mRNA was potentiated in all regions examined. MK 801 alone had no significant effect on reserpine induction of zif 268 mRNA. Pretreatment with the competitive NMDA receptor antagonist, CPP (5 mg/kg), did not significantly alter the dose response of zif 268 mRNA expression to quinpirole in any region. There was no significant effect of MK 801 on jun B mRNA expression, either on the response to quinpirole or when administered alone with reserpine. Our findings provide evidence of an interaction between the NMDA receptor channel system and the D2-dopamine system on a molecular level in striatopallidal neurons carrying output from the basal ganglia.

摘要

共同表达D2 - 多巴胺受体和NMDA受体的纹状体苍白球输出神经元,从逻辑上讲是皮质纹状体谷氨酸能输入与多巴胺能系统之间相互作用的潜在位点。最近关于精神分裂症病因的假说涉及兴奋性氨基酸和多巴胺系统。本研究旨在体内检测纹状体苍白球神经元中D2 - 多巴胺受体与NMDA受体在调节早期即刻基因(IEGs)zif 268和jun B表达中的相互作用。我们测试了NMDA拮抗剂与D2激动剂喹吡罗联合给药时,在利血平耗竭多巴胺后对IEG表达的作用是否相互影响。当用非竞争性NMDA受体拮抗剂MK 801(1毫克/千克)或PCP(20毫克/千克)与喹吡罗一起预处理大鼠时,在所有检测区域中,喹吡罗对利血平诱导的zif 268 mRNA的逆转作用均增强。单独使用MK 801对利血平诱导的zif 268 mRNA没有显著影响。用竞争性NMDA受体拮抗剂CPP(5毫克/千克)预处理在任何区域均未显著改变zif 268 mRNA表达对喹吡罗的剂量反应。MK 801对jun B mRNA表达无论是对喹吡罗的反应还是与利血平单独给药时均无显著影响。我们的研究结果提供了证据,表明在携带基底神经节输出的纹状体苍白球神经元中,NMDA受体通道系统与D2 - 多巴胺系统在分子水平上存在相互作用。

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