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Circadian Clock Regulation in Skin

Circadian Clock Regulation in Skin
皮肤的生物钟调节
批准号:
10247082
负责人:
Bogi Andersen
金额:
$42.76万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
未结题
起止时间:
2010-09-01 至 2026-05-31

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中文摘要
翻译
项目总结/摘要 生物钟,一个古老的,进化保守的时间系统,需要器官的最佳功能 和生物体寿命,在包括皮肤在内的外周组织中活跃。外周器官中的生物钟 由视交叉上核的中央时钟协调,但我们也知道, 影响周围组织的生物钟、基因表达和体内平衡。虽然新的见解是 特别是在肝脏等代谢器官的研究中, 上皮组织的健康状况还不清楚。特别是,我们不知道时间限制喂养如何影响 表皮干细胞的再生功能和皮肤衰老。在小鼠中,生物钟协调进展, 的细胞周期和DNA切除修复与中间代谢,反映在氧化还原状态, 表皮干细胞有趣的是,白天限制喂养改变了相位,降低了振幅, 皮肤生物钟,它改变了代谢相关转录组的表达,而不改变皮肤的生物钟。 在DNA合成的昼夜振荡阶段。因此,白天限制进食会破坏协调 表皮干细胞的代谢和细胞周期进程之间的联系。而表皮干中的这些周期 已知细胞调节对UVB诱导的DNA损伤的敏感性,它们在表皮细胞内稳态中的作用, 干细胞仍然是未知的。在这里,我们将调查的想法,时钟协调振荡 代谢产生的活性氧水平与细胞周期和DNA修复机制,以最大限度地提高健康 表皮干细胞的功能。具体来说,我们假设这种调节使新陈代谢最小化- 当大多数表皮干细胞正在进行DNA复制时,细胞周期阶段最 对氧化性DNA损伤敏感。这一假说预测,白天喂养诱导的昼夜节律, 表皮干细胞中的错位导致氧化代谢和细胞周期之间的不协调, 导致ROS诱导的DNA突变增加、表皮干细胞功能障碍和皮肤老化。为了验证这一 假设,我们提出两个目标。首先,我们将定义时间背后的基因调控机制- 限制进食调节的昼夜节律钟和代谢的表皮干细胞。二是 确定时间限制喂养如何调节表皮干细胞功能并影响年龄增长率- 相关的DNA突变。该提案意义重大,因为它测试了一种新的 生物钟如何协调上皮干细胞中间代谢和细胞周期的时间 细胞,以尽量减少体细胞DNA突变的积累,以及如何限制时间喂养可以强制或 破坏这种协调。该提案是创新的,因为它追求一个关于饮食作用的新想法。 干预和皮肤老化的昼夜节律钟,它使用最先进的方法,包括双链DNA- 测序,荧光寿命成像和单细胞RNA测序-以前没有应用的方法 皮肤老化。
英文摘要
PROJECT SUMMARY/ABSTRACT The circadian clock, an ancient, evolutionary conserved timing system required for optimal function of organs and organismal lifespan, is active in peripheral tissues, including the skin. Clocks in peripheral organs are coordinated by the central clock in the suprachiasmatic nucleus, but we also know that time-restricted feeding affects circadian clocks, gene expression, and homeostasis in peripheral tissues. Although new insights are emerging, especially from studies in metabolic organs like the liver, the interplay between feeding time, clocks, and tissue health in epithelia is unclear. In particular, we don't know how time-restricted feeding affects the regenerative function of epidermal stem cells and skin aging. In mice, the circadian clock coordinates progression of the cell cycle and DNA excision repair with intermediary metabolism, as reflected in the redox state of epidermal stem cells. Intriguingly, daytime-restricted feeding shifts the phase and decreases the amplitude of the skin circadian clock, and it shifts the expression of the metabolism-related transcriptome without altering the phase of the diurnal oscillations in DNA synthesis. Daytime-restricted feeding, then, disrupts the coordination between metabolism and cell cycle progression in epidermal stem cells. Whereas these cycles in epidermal stem cells are known to modulate the sensitivity to UVB-induced DNA damage, their role in homeostasis of epidermal stem cells remains otherwise unknown. Here, we will investigate the idea that the clock coordinates oscillations of metabolism-generated ROS levels with the cell cycle and the DNA repair machinery to maximize the health and function of epidermal stem cells. Specifically, we hypothesize that this regulation minimizes metabolism- generated ROS when most epidermal stem cells are undergoing DNA replication, the cell cycle stage most sensitive to oxidative DNA damage. This hypothesis predicts that daytime feeding-induced circadian misalignment in epidermal stem cells causes asynchrony between oxidative metabolism and the cell cycle, leading to increased ROS-induced DNA mutations, epidermal stem cell dysfunction, and skin aging. To test this hypothesis, we propose two aims. First, we will define the gene-regulatory mechanisms underlying time- restricted feeding modulation of the circadian clock and metabolism in epidermal stem cells. Second, we will determine how time-restricted feeding modulates epidermal stem cell function and affects the rate of age- associated DNA mutations in epidermal stem cells. The proposal is significant because it tests a new model of how the circadian clock coordinates the timing of intermediary metabolism and the cell cycle in epithelial stem cells to minimize the accumulation of somatic DNA mutations, and how time-restricted feeding can enforce or disrupt this coordination. The proposal is innovative because it pursues a new idea about the role of dietary intervention and the circadian clock in skin aging, and it uses state of the art approaches, including duplex DNA- sequencing, fluorescence lifetime imaging, and single cell RNA-sequencing--approaches not previously applied to skin aging.
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The Initiation of Vesicant Skin Injury at a Single Cell Level
  • 批准号:
    10708030
  • 项目类别:
  • 资助金额:
    $23.6万
  • 财政年份:
    2022
  • 负责人:
    Bogi Andersen
  • 依托单位:
Interdisciplinary Training Program in Skin Biology
  • 批准号:
    10612438
  • 项目类别:
  • 资助金额:
    $22.37万
  • 财政年份:
    2022
  • 负责人:
    Bogi Andersen
  • 依托单位:
The Initiation of Vesicant Skin Injury at a Single Cell Level
  • 批准号:
    10511732
  • 项目类别:
  • 资助金额:
    $23.6万
  • 财政年份:
    2022
  • 负责人:
    Bogi Andersen
  • 依托单位:
Interdisciplinary Training Program in Skin Biology
  • 批准号:
    10410209
  • 项目类别:
  • 资助金额:
    $9.16万
  • 财政年份:
    2022
  • 负责人:
    Bogi Andersen
  • 依托单位:
海外基金