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Molecular Mechanism of Cell-autonomous Circadian Gene Expression of Period2, a Crucial Regulator of the Mammalian Circadian ClockD⃞

机译:细胞自主昼夜节律基因Period2表达的分子机制,这是哺乳动物昼夜节律的关键调节子。

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摘要

Although circadian transcription of Period2 (Per2) is fundamental for the generation of circadian rhythm, the molecular mechanism remains unclear. Here we report that cell-autonomous circadian transcription of Per2 is driven by two transcriptional elements, one for rhythm generation and the other for phase control. The former contains the E-box-like sequence (CACGTT) that is sufficient and indispensable to drive oscillation, and indeed circadian transcription factors site-specifically bind to it. Furthermore, the nature of this atypical E-box is different from that of the classical circadian E-box. The current feedback loop model is based mainly on Period1. Our results provide not only compelling evidence in support of this model but also an explanation for a general basic mechanism to produce various patterns in the phase and amplitude of cell-autonomous circadian gene expression.
机译:尽管Period2(Per2)的昼夜节律转录对于昼夜节律的产生至关重要,但分子机制仍不清楚。在这里我们报告说,Per2的细胞自主昼夜节律转录是由两个转录元件驱动的,一个用于节奏产生,另一个用于相位控制。前者含有足以驱动振荡的必不可少的E-box-like序列(CACGTT),实际上昼夜节律转录因子与之特异性结合。此外,此非典型电子邮箱的性质与经典生物钟电子邮箱的性质不同。当前的反馈环路模型主要基于Period1。我们的结果不仅为支持该模型提供了有力的证据,而且为在细胞自主性昼夜节律基因表达的相位和幅度中产生各种模式的一般基本机制提供了解释。

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