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中文摘要
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描述(由申请人提供):睡眠是一个重要的生命过程,几乎发生在每一个经过充分研究的有机体中。睡眠调节不足已成为一个普遍的健康问题,可能导致各种生理和心理健康障碍。然而,人们对睡眠调节的神经、遗传和分子基础知之甚少。两个基本的过程被认为是调节睡眠的过程,一个是控制睡眠时间的昼夜节律成分(过程C),另一个是根据先前的觉醒来驱动睡眠的动态平衡成分(过程S)。在果蝇、黑腹果蝇和小鼠身上进行的研究表明,在驱动过程C的昼夜节律时钟的核心,进化上保守的转录反馈环。一个关键的昼夜节律转录激活器钟(CLK)还调节果蝇和小鼠的睡眠时间和维持,在不同的生物体中将过程C和S联系在一起。这项建议的最终目标是确定昼夜节律网络在睡眠调节中的功能。在第一个具体目标中,我们将通过测试缺乏起搏器电路某些子集的果蝇来评估昼夜节律起搏器神经元在睡眠持续时间和巩固中的功能。在第二部分中,我们将通过检测一系列昼夜节律突变体的睡眠行为和挽救CLK靶标的表达来确定昼夜节律转录反馈系统在睡眠调节中的作用。第三,我们建议揭示昼夜节律系统对睡眠调节产生影响的新的分子机制。使用候选基因方法,我们将使用一系列在果蝇中可用的遗传试剂,包括新可用的RNAi文库,研究CLK激活的、昼夜调节的和睡眠调节的基因的功能。 相关性:睡眠调节的缺陷已经成为对公共健康、性能和安全的新威胁。虽然这项提案中概述的实验旨在提高我们对睡眠-觉醒周期的神经、遗传和分子基础的理解,但我们预计这些发现将有助于制定策略,以抵消睡眠不足导致的日益严重的健康问题。
英文摘要
DESCRIPTION (provided by applicant): Sleep is a vital life process that occurs in virtually every organism sufficiently examined. Inadequate sleep regulation has become a prevalent health issue that potentially contributes to a variety of physiological and mental health disorders. However, very little is known about the neural, genetic, and molecular underpinnings of sleep regulation. Two fundamental processes are thought to regulate sleep, a circadian component (Process C) that governs sleep timing and a homeostatic component (Process S) that drives sleep as a function of prior wakefulness. Studies performed in both the fruit fly, Drosophila melanogaster, and mice have revealed evolutionarily conserved transcriptional feedback loops at the core of circadian clocks driving Process C. A key circadian transcriptional activator Clock (Clk) also regulates sleep amount and maintenance in both flies and mice, genetically linking Processes C and S in diverse organisms. The ultimate objective of this proposal is to determine the function of the circadian network in sleep regulation. In the first specific aim, we will assess the function of circadian pacemaker neurons in sleep duration and consolidation by testing flies lacking certain subsets of the pacemaker circuit. In the second, we will determine the role of the circadian transcriptional feedback system in the regulation of sleep by examining sleep behavior in a series of circadian mutants and through rescue of CLK-target expression. In the third, we propose to uncover novel molecular mechanisms by which the circadian system imposes its influence on sleep regulation. Using a candidate gene approach, we will study the function of CLK-activated, circadian-regulated, and sleep-regulated genes using an array of genetic reagents available in flies, including the newly available RNAi library. Relevance: Defects in sleep regulation have become an emerging threat to public health, performance, and safety. While experiments outlined in this proposal are designed to improve our understanding of the neural, genetic, and molecular basis of the sleep-wake cycle, we expect the findings will help foster strategies to offset the rising health issues caused by inadequate sleep.
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Central Nervous System Regulation of Aging Physiology in Drosophila
Central Nervous System Regulation of Aging Physiology in Drosophila
The Molecular and Neural Mechanisms of Circadian Clock Function in Sleep
  • 批准号:
    7740783
  • 项目类别:
  • 资助金额:
    $2.69万
  • 财政年份:
    2008
  • 负责人:
    Brian Y Chung
  • 依托单位:
The Molecular and Neural Mechanisms of Circadian Clock Function in Sleep
  • 批准号:
    7485919
  • 项目类别:
  • 资助金额:
    $2.79万
  • 财政年份:
    2008
  • 负责人:
    Brian Y Chung
  • 依托单位:
海外基金