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UNC79 and UNC80 Putative Auxiliary Subunits of the NARROW ABDOMEN Ion Channel Are Indispensable for Robust Circadian Locomotor Rhythms in Drosophila

机译:UNC79和UNC80NARROW ABDOMEN离子通道的推定辅助亚基对于果蝇的稳健的昼夜运动节律是必不可少的

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摘要

In the fruit fly Drosophila melanogaster, a network of circadian pacemaker neurons drives daily rhythms in rest and activity. The ion channel NARROW ABDOMEN (NA), orthologous to the mammalian sodium leak channel NALCN, functions downstream of the molecular circadian clock in pacemaker neurons to promote behavioral rhythmicity. To better understand the function and regulation of the NA channel, we have characterized two putative auxiliary channel subunits in Drosophila, unc79 (aka dunc79) and unc80 (aka CG18437). We have generated novel unc79 and unc80 mutations that represent strong or complete loss-of-function alleles. These mutants display severe defects in circadian locomotor rhythmicity that are indistinguishable from na mutant phenotypes. Tissue-specific RNA interference and rescue analyses indicate that UNC79 and UNC80 likely function within pacemaker neurons, with similar anatomical requirements to NA. We observe an interdependent, post-transcriptional regulatory relationship among the three gene products, as loss of na, unc79, or unc80 gene function leads to decreased expression of all three proteins, with minimal effect on transcript levels. Yet despite this relationship, we find that the requirement for unc79 and unc80 in circadian rhythmicity cannot be bypassed by increasing NA protein expression, nor can these putative auxiliary subunits substitute for each other. These data indicate functional requirements for UNC79 and UNC80 beyond promoting channel subunit expression. Immunoprecipitation experiments also confirm that UNC79 and UNC80 form a complex with NA in the Drosophila brain. Taken together, these data suggest that Drosophila NA, UNC79, and UNC80 function together in circadian clock neurons to promote rhythmic behavior.
机译:在果蝇果蝇中,昼夜节律起搏器神经元网络驱动着休息和活动的日常节律。与哺乳动物钠泄漏通道NALCN直系同源的离子通道NARROW ABDOMEN(NA)在起搏器神经元的分子昼夜节律时钟下游起作用,以促进行为节律。为了更好地了解NA通道的功能和调控,我们在果蝇中鉴定了两个假定的辅助通道亚单位unc79(aka dunc79)和unc80(aka CG18437)。我们已经产生了代表强大或完全丧失功能的等位基因的新型unc79和unc80突变。这些突变体在昼夜节律性运动节奏方面显示出严重缺陷,与na突变体表型没有区别。组织特异性RNA干扰和拯救分析表明,UNC79和UNC80可能在起搏器神经元内起作用,其解剖学要求与NA相似。我们观察到这三个基因产物之间存在相互依存的转录后调控关系,因为na,unc79或unc80基因功能的丧失会导致所有这三种蛋白质的表达下降,而对转录水平的影响却很小。尽管存在这种关系,但我们发现昼夜节律对unc79和unc80的需求不能通过增加NA蛋白表达来绕过,这些假定的辅助亚基也不能彼此替代。这些数据表明除了促进通道亚基表达外,UNC79和UNC80的功能要求。免疫沉淀实验还证实,果蝇大脑中UNC79和UNC80与NA形成复合物。综上所述,这些数据表明果蝇NA,UNC79和UNC80在昼夜节律神经元中共同起作用以促进节律行为。

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