首页> 外文期刊>Frontiers in Cellular Neuroscience >The Narrow Abdomen Ion Channel Complex Is Highly Stable and Persists from Development into Adult Stages to Promote Behavioral Rhythmicity
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The Narrow Abdomen Ion Channel Complex Is Highly Stable and Persists from Development into Adult Stages to Promote Behavioral Rhythmicity

机译:狭窄的腹部离子通道复合物非常稳定,并且从发育到成年阶段一直存在,以促进行为节律性

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The sodium leak channel NARROW ABDOMEN (NA)/ NALCN is an important component of circadian pacemaker neuronal output. In Drosophila , rhythmic expression of the NA channel regulator Nlf-1 in a subset of adult pacemaker neurons has been proposed to contribute to circadian regulation of channel localization or activity. Here we have restricted expression of Drosophila NA channel subunits or the Nlf-1 regulator to either development or adulthood using the temperature-inducible tubulin -GAL80~(ts)system. Surprisingly, we find that developmental expression of endogenous channel subunits and Nlf-1 is sufficient to promote robust rhythmic behavior in adults. Moreover, we find that channel complex proteins produced during development persist in the Drosophila head with little decay for at least 5–7 days in adults. In contrast, restricting either endogenous or transgenic gene expression to adult stages produces only limited amounts of the functional channel complex. These data indicate that much of the NA channel complex that functions in adult circadian neurons is normally produced during development, and that the channel complex is very stable in most neurons in the Drosophila brain. Based on these findings, we propose that circadian regulation of NA channel function in adult pacemaker neurons is mediated primarily by post-translational mechanisms that are independent of Nlf-1.
机译:钠泄漏通道NARROW ABDOMEN(NA)/ NALCN是昼夜节律起搏器神经元输出的重要组成部分。在果蝇中,已经提出在成人起搏器神经元的子集中NA通道调节剂Nlf-1的节律表达有助于昼夜节律调节通道的定位或活性。在这里,我们使用温度诱导性微管蛋白-GAL80〜(ts)系统将果蝇NA通道亚单位或Nlf-1调节子的表达限制为发育或成年。出人意料的是,我们发现内源性通道亚基和Nlf-1的发育表达足以促进成人稳健的节律行为。此外,我们发现,在发育过程中产生的通道复合蛋白在果蝇头部持续存在,至少在成虫中衰减至少5-7天。相反,将内源或转基因基因表达限制在成年阶段仅产生有限量的功能性通道复合物。这些数据表明,在成人昼夜节律神经元中起作用的大部分NA通道复合物通常是在发育过程中产生的,并且该通道复合物在果蝇大脑中的大多数神经元中非常稳定。基于这些发现,我们建议成人起搏器神经元中NA通道功能的昼夜节律调节主要由独立于Nlf-1的翻译后机制介导。

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