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D1多巴胺受体激活后,hnRNP H的C端与N端结构域中神经元免疫荧光的变化。

Changes in neuronal immunofluorescence in the C- versus N-terminal domains of hnRNP H following D1 dopamine receptor activation.

作者信息

Ruan Qiu T, Yazdani Neema, Beierle Jacob A, Hixson Kathryn M, Hokenson Kristen E, Apicco Daniel J, Luttik Kimberly P, Zheng Karen, Maziuk Brandon F, Ash Peter E A, Szumlinski Karen K, Russek Shelley J, Wolozin Benjamin, Bryant Camron D

机构信息

Laboratory of Addiction Genetics, Department of Pharmacology and Experimental Therapeutics and Psychiatry, Boston University School of Medicine, United States; Biomolecular Pharmacology Training Program, Department of Pharmacology and Experimental Therapeutics, Boston University School of Medicine, United States; Transformative Training Program in Addiction Science, Boston University, United States.

Biomolecular Pharmacology Training Program, Department of Pharmacology and Experimental Therapeutics, Boston University School of Medicine, United States; Laboratory of Translational Epilepsy, Department of Pharmacology and Experimental Therapeutics and Biology, Boston University School of Medicine, United States.

出版信息

Neurosci Lett. 2018 Sep 25;684:109-114. doi: 10.1016/j.neulet.2018.07.015. Epub 2018 Jul 9.

Abstract

RNA binding proteins are a diverse class of proteins that regulate all aspects of RNA metabolism. Accumulating studies indicate that heterogeneous nuclear ribonucleoproteins are associated with cellular adaptations in response to drugs of abuse. We recently mapped and validated heterogeneous nuclear ribonucleoprotein H1 (Hnrnph1) as a quantitative trait gene underlying differential behavioral sensitivity to methamphetamine. The molecular mechanisms by which hnRNP H1 alters methamphetamine behaviors are unknown but could involve pre- and/or post-synaptic changes in protein localization and function. Methamphetamine initiates post-synaptic D1 dopamine receptor signaling indirectly by binding to pre-synaptic dopamine transporters and vesicular monoamine transporters of midbrain dopaminergic neurons which triggers reverse transport and accumulation of dopamine at the synapse. Here, we examined changes in neuronal localization of hnRNP H in primary rat cortical neurons that express dopamine receptors that can be modulated by the D1 or D2 dopamine receptor agonists SKF38393 and (-)-Quinpirole HCl, respectively. Basal immunostaining of hnRNP H was localized primarily to the nucleus. D1 dopamine receptor activation induced an increase in hnRNP H nuclear immunostaining as detected by immunocytochemistry with a C-domain directed antibody containing epitope near the glycine-rich domain but not with an N-domain specific antibody. Although there was no change in hnRNP H protein in the nucleus or cytoplasm, there was a decrease in Hnrnph1 transcript following D1 receptor stimulation. Taken together, these results suggest that D1 receptor activation increases availability of the hnRNP H C-terminal epitope, which could potentially reflect changes in protein-protein interactions. Thus, D1 receptor signaling could represent a key molecular post-synaptic event linking Hnrnph1 polymorphisms to drug-induced behavior.

摘要

RNA结合蛋白是一类多样的蛋白质,可调节RNA代谢的各个方面。越来越多的研究表明,异质性核糖核蛋白与细胞对滥用药物的适应性有关。我们最近绘制并验证了异质性核糖核蛋白H1(Hnrnph1)是对甲基苯丙胺行为敏感性差异的一个数量性状基因。hnRNP H1改变甲基苯丙胺行为的分子机制尚不清楚,但可能涉及蛋白质定位和功能的突触前和/或突触后变化。甲基苯丙胺通过与中脑多巴胺能神经元的突触前多巴胺转运体和囊泡单胺转运体结合,间接启动突触后D1多巴胺受体信号传导,从而触发多巴胺在突触处的逆向转运和积累。在此,我们研究了原代大鼠皮层神经元中hnRNP H的神经元定位变化,这些神经元表达的多巴胺受体可分别由D1或D2多巴胺受体激动剂SKF38393和(-)-喹吡罗盐酸盐调节。hnRNP H的基础免疫染色主要定位于细胞核。通过免疫细胞化学检测,用富含甘氨酸结构域附近含有表位的C结构域定向抗体检测到,D1多巴胺受体激活导致hnRNP H核免疫染色增加,但用N结构域特异性抗体检测则没有变化。虽然细胞核或细胞质中的hnRNP H蛋白没有变化,但D1受体刺激后Hnrnph1转录本减少。综上所述,这些结果表明D1受体激活增加了hnRNP H C末端表位的可用性,这可能潜在地反映了蛋白质-蛋白质相互作用的变化。因此,D1受体信号传导可能代表了一个关键的突触后分子事件,将Hnrnph1多态性与药物诱导的行为联系起来。

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