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Ih Current Is Necessary to Maintain Normal Dopamine Fluctuations and Sleep Consolidation in Drosophila

机译:Ih电流是维持果蝇正常多巴胺波动和睡眠巩固所必需的

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摘要

HCN channels are becoming pharmacological targets mainly in cardiac diseases. But apart from their well-known role in heart pacemaking, these channels are widely expressed in the nervous system where they contribute to the neuron firing pattern. Consequently, abolishing Ih current might have detrimental consequences in a big repertoire of behavioral traits. Several studies in mammals have identified the Ih current as an important determinant of the firing activity of dopaminergic neurons, and recent evidences link alterations in this current to various dopamine-related disorders. We used the model organism Drosophila melanogaster to investigate how lack of Ih current affects dopamine levels and the behavioral consequences in the sleep∶activity pattern. Unlike mammals, in Drosophila there is only one gene encoding HCN channels. We generated a deficiency of the DmIh core gene region and measured, by HPLC, levels of dopamine. Our data demonstrate daily variations of dopamine in wild-type fly heads. Lack of Ih current dramatically alters dopamine pattern, but different mechanisms seem to operate during light and dark conditions. Behaviorally, DmIh mutant flies display alterations in the rest∶activity pattern, and altered circadian rhythms. Our data strongly suggest that Ih current is necessary to prevent dopamine overproduction at dark, while light input allows cycling of dopamine in an Ih current dependent manner. Moreover, lack of Ih current results in behavioral defects that are consistent with altered dopamine levels.
机译:HCN通道正成为主要在心脏病方面的药理靶标。但是,除了它们在心脏起搏中的众所周知的作用外,这些通道在神经系统中得到广泛表达,并在其中促进神经元放电模式。因此,取消Ih电流可能会对行为特征的大量保留产生不利影响。哺乳动物中的多项研究已将Ih电流确定为多巴胺能神经元放电活性的重要决定因素,最近的证据表明,这种电流的变化与多种多巴胺相关疾病有关。我们使用模型生物果蝇(Drosophila melanogaster)来研究缺乏Ih电流如何影响多巴胺水平以及在睡眠:活动模式中的行为后果。与哺乳动物不同,在果蝇中只有一个编码HCN通道的基因。我们产生了DmIh核心基因区域的缺陷,并通过HPLC测定了多巴胺的水平。我们的数据证明了野生型蝇头中多巴胺的每日变化。缺乏Ih电流会极大地改变多巴胺模式,但在明暗条件下似乎有不同的机制起作用。从行为上讲,DmIh突变体的苍蝇表现出休息:活动模式的改变,以及昼夜节律的改变。我们的数据强烈表明,Ih电流对于防止黑暗中多巴胺的过量生产是必要的,而光输入则允许以Ih电流依赖性方式循环多巴胺。此外,缺乏Ih电流导致行为缺陷,其与改变的多巴胺水平一致。

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