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首页> 外文期刊>Molecular and Cellular Biology >Identification of Light-Sensitive Phosphorylation Sites on PERIOD That Regulate the Pace of Circadian Rhythms in Drosophila
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Identification of Light-Sensitive Phosphorylation Sites on PERIOD That Regulate the Pace of Circadian Rhythms in Drosophila

机译:调节果蝇昼夜节律节奏的PEROD上的感光磷酸化位点的鉴定。

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The main components regulating the pace of circadian (?24 h) clocks in animals are PERIOD (PER) proteins, transcriptional regulators that undergo daily changes in levels and nuclear accumulation by means of complex multisite phosphorylation programs. In the present study, we investigated the function of two phosphorylation sites, at Ser826 and Ser828, located in a putative nuclear localization signal (NLS) on the Drosophila melanogaster PER protein. These sites are phosphorylated by DOUBLETIME (DBT; Drosophila homolog of CK1δ/ε), the key circadian kinase regulating the daily changes in PER stability and phosphorylation. Mutant flies in which phosphorylation at Ser826/Ser828 is blocked manifest behavioral rhythms with periods slightly longer than 1 h and with altered temperature compensation properties. Intriguingly, although phosphorylation at these sites does not influence PER stability, timing of nuclear entry, or transcriptional autoinhibition, the phospho-occupancy at Ser826/Ser828 is rapidly stimulated by light and blocked by TIMELESS (TIM), the major photosensitive clock component in Drosophila and a crucial binding partner of PER. Our findings identify the first phosphorylation sites on core clock proteins that are acutely regulated by photic cues and suggest that some phosphosites on PER proteins can modulate the pace of downstream behavioral rhythms without altering central aspects of the clock mechanism.
机译:调节动物昼夜节律(?24 h)时钟速度的主要成分是PERIOD(PER)蛋白,通过复杂的多位点磷酸化程序每天进行水平变化和核积累的转录调节因子。在本研究中,我们调查了果蝇PER蛋白上一个假定的核定位信号(NLS)中位于Ser826和Ser828的两个磷酸化位点的功能。这些位点被DOUBLETIME(DBT;果蝇CK1δ/ε的同系物)磷酸化,这是调节PER稳定性和磷酸化水平每日变化的关键昼夜节律激酶。 Ser826 / Ser828的磷酸化受阻的突变体蝇表现出行为节律,周期略长于1小时,并且温度补偿特性发生了变化。有趣的是,尽管这些位点的磷酸化不会影响PER的稳定性,核进入的时间或转录的自抑制作用,但光迅速刺激了Ser826 / Ser828的磷酸占用,而果蝇中的主要光敏时钟成分TIMELESS(TIM)则阻止了它的磷酸化。以及PER的重要约束力合作伙伴。我们的发现确定了核心时钟蛋白上的第一个磷酸化位点受到光信号的强烈调节,并表明PER蛋白上的一些磷酸位点可以调节下游行为的节奏,而不会改变时钟机制的中心方面。

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