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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Circadian and feeding cues integrate to drive rhythms of physiology in Drosophila insulin-producing cells
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Circadian and feeding cues integrate to drive rhythms of physiology in Drosophila insulin-producing cells

机译:昼夜节律和饲养线索相结合以驱动果蝇胰岛素产生细胞中的生理节律

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摘要

Circadian clocks regulate much of behavior and physiology, but the mechanisms by which they do so remain poorly understood. While cyclic gene expression is thought to underlie metabolic rhythms, little is known about cycles in cellular physiology. We found that Drosophila insulin-producing cells (IPCs), which are located in the pars inter-cerebralis and lack an autonomous circadian clock, are functionally connected to the central circadian clock circuit via DN1 neurons. Insulin mediates circadian output by regulating the rhythmic expression of a metabolic gene (sxe2) in the fat body. Patch clamp electrophysiology reveals that IPCs display circadian clock-regulated daily rhythms in firing event frequency and bursting proportion under light:dark conditions. The activity of IPCs and the rhythmic expression of sxe2 are additionally regulated by feeding, as demonstrated by night feeding-induced changes in IPC firing characteristics and sxe2 levels in the fat body. These findings indicate circuit-level regulation of metabolism by clock cells in Drosophila and support a role for the pars intercerebralis in integrating circadian control of behavior and physiology.
机译:昼夜节律对行为和生理有很大的调节作用,但是人们对其进行调节的机制仍然知之甚少。虽然循环基因表达被认为是代谢节律的基础,但对细胞生理周期的了解却很少。我们发现,果蝇胰岛素产生细胞(IPCs)位于pars脑内,缺乏自主的生物钟,通过DN1神经元功能连接到中央生物钟电路。胰岛素通过调节脂肪体内代谢基因(sxe2)的节律表达来介导昼夜节律。膜片钳电生理学揭示,IPC在明暗条件下显示出昼夜节律性的昼夜节律,触发事件频率和爆发比例。 IPC的活性和sxe2的节律性表达还可以通过进食来调节,如夜间进食引起的IPC射击特性和脂肪体内sxe2水平的变化所证明。这些发现表明果蝇中时钟细胞对代谢的电路级调节,并支持脑部pars在整合生物钟对行为和生理的控制中的作用。

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