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Real-time recording of circadian liver gene expression in freely moving mice reveals the phase-setting behavior of hepatocyte clocks

机译:实时记录自由移动的小鼠的昼夜节律肝脏基因表达揭示了肝细胞时钟的定相行为

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摘要

The mammalian circadian timing system consists of a master pacemaker in the suprachiasmatic nucleus (SCN) in the hypothalamus, which is thought to set the phase of slave oscillators in virtually all body cells. However, due to the lack of appropriate in vivo recording technologies, it has been difficult to study how the SCN synchronizes oscillators in peripheral tissues. Here we describe the real-time recording of bioluminescence emitted by hepatocytes expressing circadian luciferase reporter genes in freely moving mice. The technology employs a device dubbed RT-Biolumicorder, which consists of a cylindrical cage with reflecting conical walls that channel photons toward a photomultiplier tube. The monitoring of circadian liver gene expression revealed that hepatocyte oscillators of SCN-lesioned mice synchronized more rapidly to feeding cycles than hepatocyte clocks of intact mice. Hence, the SCN uses signaling pathways that counteract those of feeding rhythms when their phase is in conflict with its own phase.
机译:哺乳动物的昼夜节律计时系统由下丘脑上眼睑上核(SCN)中的主起搏器组成,该起搏器被认为可以设定几乎所有人体细胞中从动振荡器的相位。但是,由于缺乏适当的体内记录技术,因此很难研究SCN如何同步外围组织中的振荡器。在这里,我们描述了在自由移动的小鼠中实时表达昼夜荧光素酶报道基因的肝细胞发出的生物发光的记录。该技术采用了一种称为RT-Biolumicorder的设备,该设备由带有反射圆锥形壁的圆柱笼组成,该圆锥形壁将光子引向光电倍增管。对昼夜节律性肝基因表达的监测表明,与完整小鼠的肝细胞时钟相比,SCN损伤小鼠的肝细胞振荡器与进食周期的同步更快。因此,当SCN的相位与其自身的相位发生冲突时,SCN使用抵消其进食节奏的信号通路。

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