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首页> 外文期刊>eLife journal >Spliceosome factors target timeless (tim) mRNA to control clock protein accumulation and circadian behavior in Drosophila
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Spliceosome factors target timeless (tim) mRNA to control clock protein accumulation and circadian behavior in Drosophila

机译:剪接体因子靶向永恒(tim)mRNA,以控制果蝇中的时钟蛋白积累和昼夜节律行为

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Transcription-translation feedback loops that comprise eukaryotic circadian clocks rely upon temporal delays that separate the phase of active transcription of clock genes, such as Drosophila period (per) and timeless (tim), from negative feedback by the two proteins. However, our understanding of the mechanisms involved is incomplete. Through an RNA interference screen, we found that pre-mRNA processing 4 (PRP4) kinase, a component of the U4/U5.U6 triple small nuclear ribonucleoprotein (tri-snRNP) spliceosome, and other tri-snRNP components regulate cycling of the molecular clock as well as restactivity rhythms. Unbiased RNA-Sequencing uncovered an alternatively spliced intron in tim whose increased retention upon prp4 downregulation leads to decreased TIM levels. We demonstrate that the splicing of tim is rhythmic with a phase that parallels delayed accumulation of the protein in a 24 hr cycle. We propose that alternative splicing constitutes an important clock mechanism for delaying the daily accumulation of clock proteins, and thereby negative feedback by them.
机译:包含真核生物钟的转录-翻译反馈环依赖于时间延迟,该时间延迟将时钟基因的主动转录阶段(如果蝇周期(per)和永恒(tim))与两种蛋白质的负反馈分开。但是,我们对所涉及机制的理解还不完整。通过RNA干扰筛查,我们发现前mRNA加工4(PRP4)激酶是U4 / U5.U6三重小核糖核蛋白(tri-snRNP)剪接体的一个组成部分,以及其他tri-snRNP组成部分可调节分子的循环时钟以及运动节奏。无偏RNA测序在tim中发现了一个剪接的内含子,该内含子在prp4下调后保留增加,导致TIM水平降低。我们证明了tim的拼接是有节奏的,与24小时周期中蛋白质的延迟积累相平行。我们建议替代剪接构成重要的时钟机制,以延迟时钟蛋白的每日积累,从而延迟它们的负反馈。

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