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Circadian Regulation of the Na+/K+-Atpase Alpha Subunit in the Visual System Is Mediated by the Pacemaker and by Retina Photoreceptors in Drosophila Melanogaster

机译:在果蝇中由起搏器和视网膜感光器介导视觉系统中Na + / K + -Atpaseα亚基的昼夜节律调节。

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摘要

We investigated the diurnal oscillation in abundance of the catalytic α subunit of the sodium/potassium pump (ATPα) in the brain of Drosophila melanogaster. This rhythm is bimodal and is particularly robust in the glia cells of the lamina, the first optic neuropil. We observed loss of ATPα cycling in lamina glia in behaviourally arrhythmic per01 and tim01 mutants and in flies overexpressing the pro-apoptotic gene hid in the PDF-positive clock neurons. Moreover, the rhythm of ATPα abundance was altered in cry01 and Pdf0 mutants, in flies with a weakened clock mechanism in retina photoreceptor cells and in those subject to downregulation of the neuropeptide ITP by RNAi. This complex, rhythmic regulation of the α subunit suggests that the sodium/potassium pump may be a key target of the circadian pacemaker to impose daily control on brain activities, such as rhythmic changes in neuronal plasticity, which are best observed in the visual system.
机译:我们调查了果蝇黑脑中钠/钾泵(ATPα)催化α亚基的大量昼夜振荡。这种节律是双峰的,并且在第一个视神经绒毛层板的神经胶质细胞中特别健壮。我们观察到per 01 和tim 01 突变体在行为异常性心律失常的果蝇中的ATPα循环丢失,并且果蝇过表达隐藏在PDF阳性时钟神经元中的促凋亡基因。此外,cry 01 和Pdf 0 突变体,视网膜感光细胞中时钟机制减弱的果蝇以及受其下调调节的果蝇中ATPα丰度的节律都发生了改变。 RNAi的神经肽ITP。 α亚基的这种复杂的,有节奏的调节表明,钠/钾泵可能是昼夜节律起搏器的关键目标,可以对大脑活动进行日常控制,例如神经元可塑性的有节奏变化,这在视觉系统中最明显。

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