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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Mapping a barbiturate withdrawal locus to a 0.44 Mb interval and analysis of a novel null mutant identify a role for Kcnj9 (GIRK3) in withdrawal from pentobarbital, zolpidem, and ethanol.
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Mapping a barbiturate withdrawal locus to a 0.44 Mb interval and analysis of a novel null mutant identify a role for Kcnj9 (GIRK3) in withdrawal from pentobarbital, zolpidem, and ethanol.

机译:将巴比妥类药物撤药位点定位到0.44 Mb的区间,并分析新型无效突变体,确定Kcnj9(GIRK3)在从戊巴比妥,唑吡坦和乙醇撤药中的作用。

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摘要

Here, we map a quantitative trait locus (QTL) with a large effect on predisposition to barbiturate (pentobarbital) withdrawal to a 0.44 Mb interval of mouse chromosome 1 syntenic with human 1q23.2. We report a detailed analysis of the genes within this interval and show that it contains 15 known and predicted genes, 12 of which demonstrate validated genotype-dependent transcript expression and/or nonsynonymous coding sequence variation that may underlie the influence of the QTL on withdrawal. These candidates are involved in diverse cellular functions including intracellular trafficking, potassium conductance and spatial buffering, and multimolecular complex dynamics, and indicate both established and novel aspects of neurobiological response to sedative-hypnotics. This work represents a substantial advancement toward identification of the gene(s) that underlie the phenotypic effects of the QTL. We identify Kcnj9 as a particularly promising candidate and report the development of a Kcnj9-null mutant model that exhibits significantly less severe withdrawal from pentobarbital as well as other sedative-hypnotics (zolpidem and ethanol) versus wild-type littermates. Reduced expression of Kcnj9, which encodes GIRK3 (Kir3.3), is associated with less severe sedative-hypnotic withdrawal. A multitude of QTLs for a variety of complex traits, including diverse responses to sedative-hypnotics, have been detected on distal chromosome 1 in mice, and as many as four QTLs on human chromosome 1q have been implicated in human studies of alcohol dependence. Thus, our results will be primary to additional efforts to identify genes involved in a wide variety of behavioral responses to sedative-hypnotics and may directly facilitate progress in human genetics.
机译:在这里,我们绘制了一个数量性状基因位点(QTL),它对巴比妥类药物(戊巴比妥)撤药至与人1q23.2同源的小鼠1号染色体的0.44 Mb间隔的易感性有很大影响。我们报告该间隔内的基因的详细分析,并显示它包含15个已知和预测的基因,其中12个证明了有效的基因型依赖性转录表达和/或非同义编码序列变异,可能是QTL对戒断的影响。这些候选物参与多种细胞功能,包括细胞内运输,钾电导和空间缓冲以及多分子复合物动力学,并表明对镇静催眠药的神经生物学反应的既定和新颖方面。这项工作代表了对鉴定构成QTL表型效应基础的基因的实质性进步。我们确定Kcnj9是一个特别有前途的候选人,并报告了一个Kcnj9-null突变模型的发展,该模型与野生型同窝仔相比,显示出从戊巴比妥以及其他镇静催眠药(唑吡坦和乙醇)中撤出的严重程度明显降低。编码GIRK3(Kir3.3)的Kcnj9表达降低与镇静催眠药戒断程度较轻有关。在小鼠的第1号远端染色体上已检测到多种针对多种复杂性状的QTL,包括对镇静催眠药的不同反应,并且人类酒精依赖研究涉及人类第1q染色体上多达四个QTL。因此,我们的结果将是进一步努力鉴定参与镇静催眠药多种行为反应的基因的基础,并可能直接促进人类遗传学的发展。

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