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Normalizing Dopamine D2 Receptor-Mediated Responses in D2 Null Mutant Mice by Virus-Mediated Receptor Restoration: Comparing D2L and D2S

机译:通过病毒介导的受体修复归一化D2空突变小鼠中的多巴胺D2受体介导的反应:比较D2L和D2S

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摘要

D2 receptor null mutant (Drd2−/−) mice have altered responses to the rewarding and locomotor effects of psychostimulant drugs, which is evidence of a necessary role for D2 receptors in these behaviors. Furthermore, work with mice that constitutively express only the D2 receptor short form (D2S), as a result of genetic deletion of the long form (D2L), provides the basis for a current model in which D2L is thought to be the postsynaptic D2 receptor on medium spiny neurons in the basal forebrain, and D2S the autoreceptor that regulates the activity of dopamine neurons and dopamine synthesis and release. Because constitutive genetic deletion of the D2 or D2L receptor may cause compensatory changes that influence functional outcomes, our approach is to identify aspects of the abnormal phenotype of a Drd2−/− mouse that can be normalized by virus-mediated D2 receptor expression. Drd2−/− mice are deficient in basal and methamphetamine-induced locomotor activation and lack D2 receptor agonist-induced activation of G protein-regulated inward rectifying potassium channels (GIRKs) in dopaminergic neurons. Virus-mediated expression of D2L in the nucleus accumbens significantly restored methamphetamine-induced locomotor activation, but not basal locomotor activity, compared to mice receiving control virus. It also restored the effect of methamphetamine to decrease time spent in the center of the activity chamber in female but not male Drd2−/− mice. Furthermore, the effect of expression of D2S was indistinguishable from D2L. Similarly, virus-mediated expression of either D2S or D2L in substantia nigra neurons restored D2 agonist-induced activation of GIRKs. In this acute expression system, the alternatively spliced forms of the D2 receptor appear to be equally capable of acting as postsynaptic receptors and autoreceptors.
机译:D2受体无效突变体(Drd2 -/-)小鼠已改变了对精神兴奋药的奖励和运动作用的反应,这证明了D2受体在这些行为中的必要作用。此外,与由于长形式(D2L)的基因缺失而组成性仅表达D2受体短形式(D2S)的小鼠一起工作,为当前模型提供了基础,其中D2L被认为是突触后D2受体D2S是调节多巴胺神经元活性和多巴胺合成与释放的自体受体,它可以调节基底前脑中段的棘突神经元。由于D2或D2L受体的组成性遗传删除可能会导致代偿性变化,从而影响功能结果,因此我们的方法是确定Drd2 -// 小鼠异常表型的各个方面,这些方面可以通过病毒进行归一化处理。介导的D2受体表达。 Drd2 -/-小鼠缺乏基础和甲基苯丙胺诱导的运动活化,并且缺乏多巴胺能神经元中G蛋白调节的内向整流钾通道(GIRKs)的D2受体激动剂诱导的活化。与接受对照病毒的小鼠相比,在伏隔核中病毒介导的D2L表达显着恢复了甲基苯丙胺诱导的自发激活,但没有恢复基础自发活性。它也恢复了甲基苯丙胺的作用,以减少雌性而非雄性Drd2 -// 小鼠活动室中心的时间。此外,D2S表达的作用与D2L没有区别。同样,黑质黑质神经元中病毒介导的D2S或D2L表达恢复了D2激动剂诱导的GIRKs激活。在这种急性表达系统中,D2受体的其他剪接形式似乎同样具有充当突触后受体和自身受体的能力。

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