Atp1a2和Kcnj9是C57BL/6亚株对羟考酮诱导的运动激活和戒断诱导的焦虑样行为敏感的候选基因。

IF 2.4 4区 心理学 Q2 BEHAVIORAL SCIENCES
Lisa R. Goldberg, Britahny M. Baskin, Jacob A. Beierle, Yahia Adla, Julia C. Kelliher, Emily J. Yao, Stacey L. Kirkpatrick, Eric R. Reed, David F. Jenkins, Jiayi Cox, Alexander M. Luong, Kimberly P. Luttik, Julia A. Scotellaro, Timothy A. Drescher, Sydney B. Crotts, Neema Yazdani, Martin T. Ferris, W. Evan Johnson, Megan K. Mulligan, Camron D. Bryant
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引用次数: 0

摘要

阿片类药物使用障碍是遗传性的,但其遗传病因在很大程度上是未知的。C57BL/6J和C57BL/6NJ小鼠亚系在遗传多样性有限的情况下表现出表型多样性,共同促进遗传发现。在条件位置偏好模式下,C57BL/6NJ小鼠对氧可酮(OXY)诱导的运动激活的敏感性低于C57BL/6J小鼠。氧诱导的运动活动性状的狭义遗传率为0.22 ~ 0.31,适合进行遗传分析。在F2杂交的数量性状位点(QTL)定位中发现1号染色体QTL解释了高加迷宫中氧运动和焦虑样退出7%-12%的变异。第二个关于EPM戒断行为的QTL位于靠近Gabra2 (GABA-A受体的α -2亚基)的5号染色体上,解释了9%的变异。为了缩小1号染色体位点,我们构建了163-181 Mb的重组系,捕获了OXY运动性状和退缩的QTL,并精细定位了2.45 Mb的区域(170.16-172.61 Mb)。转录组分析鉴定出5个定位纹状体顺式eqtl转录本,其中2个在蛋白水平上得到证实(KCNJ9, ATP1A2)。Kcnj9编码钾离子通道(GIRK3),该通道是mu阿片受体信号传导的主要效应体。Atp1a2编码Na+/K+ atp酶的一个亚基,该亚基调节神经元兴奋性,并在慢性阿片类药物给药后显示功能适应。总之,我们确定了两个候选基因,这些基因是阿片类药物生理和行为特性的基础,与研究人员使用这些广泛使用的亚株和阿片类药物使用障碍的人类遗传研究具有直接的临床前相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Atp1a2 and Kcnj9 Are Candidate Genes Underlying Sensitivity to Oxycodone-Induced Locomotor Activation and Withdrawal-Induced Anxiety-Like Behaviors in C57BL/6 Substrains

Atp1a2 and Kcnj9 Are Candidate Genes Underlying Sensitivity to Oxycodone-Induced Locomotor Activation and Withdrawal-Induced Anxiety-Like Behaviors in C57BL/6 Substrains

Opioid use disorder is heritable, yet its genetic etiology is largely unknown. C57BL/6J and C57BL/6NJ mouse substrains exhibit phenotypic diversity in the context of limited genetic diversity which together can facilitate genetic discovery. Here, we found C57BL/6NJ mice were less sensitive to oxycodone (OXY)-induced locomotor activation versus C57BL/6J mice in a conditioned place preference paradigm. Narrow-sense heritability of OXY-induced locomotor activity traits ranged from 0.22 to 0.31, implicating suitability for genetic analysis. Quantitative trait locus (QTL) mapping in an F2 cross identified a chromosome 1 QTL explaining 7%–12% of the variance in OXY locomotion and anxiety-like withdrawal in the elevated plus maze. A second QTL for EPM withdrawal behavior on chromosome 5 near Gabra2 (alpha-2 subunit of GABA-A receptor) explained 9% of the variance. To narrow the chromosome 1 locus, we generated recombinant lines spanning 163–181 Mb, captured the QTL for OXY locomotor traits and withdrawal, and fine-mapped a 2.45-Mb region (170.16–172.61 Mb). Transcriptome analysis identified five, localized striatal cis-eQTL transcripts and two were confirmed at the protein level (KCNJ9, ATP1A2). Kcnj9 codes for a potassium channel (GIRK3) that is a major effector of mu opioid receptor signaling. Atp1a2 codes for a subunit of a Na+/K+ ATPase enzyme that regulates neuronal excitability and shows functional adaptations following chronic opioid administration. To summarize, we identified two candidate genes underlying the physiological and behavioral properties of opioids, with direct preclinical relevance to investigators employing these widely used substrains and clinical relevance to human genetic studies of opioid use disorder.

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来源期刊
Genes Brain and Behavior
Genes Brain and Behavior 医学-行为科学
CiteScore
6.80
自引率
4.00%
发文量
62
审稿时长
4-8 weeks
期刊介绍: Genes, Brain and Behavior was launched in 2002 with the aim of publishing top quality research in behavioral and neural genetics in their broadest sense. The emphasis is on the analysis of the behavioral and neural phenotypes under consideration, the unifying theme being the genetic approach as a tool to increase our understanding of these phenotypes. Genes Brain and Behavior is pleased to offer the following features: 8 issues per year online submissions with first editorial decisions within 3-4 weeks and fast publication at Wiley-Blackwells High visibility through its coverage by PubMed/Medline, Current Contents and other major abstracting and indexing services Inclusion in the Wiley-Blackwell consortial license, extending readership to thousands of international libraries and institutions A large and varied editorial board comprising of international specialists.
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