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昼夜节律的组织受 SCN 以外的起搏器控制。

Circadian organization is governed by extra-SCN pacemakers.

机构信息

Department of Biology, University of Virginia, Charlottesville, VA, USA.

出版信息

J Biol Rhythms. 2010 Dec;25(6):432-41. doi: 10.1177/0748730410385204.

Abstract

In mammals, a pacemaker in the suprachiasmatic nucleus (SCN) is thought to be required for behavioral, physiological, and molecular circadian rhythms. However, there is considerable evidence that temporal food restriction (restricted feedisng [RF]) and chronic methamphetamine (MA) can drive circadian rhythms of locomotor activity, body temperature, and endocrine function in the absence of SCN. This indicates the existence of extra-SCN pacemakers: the Food Entrainable Oscillator (FEO) and Methamphetamine Sensitive Circadian Oscillator (MASCO). Here, we show that these extra-SCN pacemakers control the phases of peripheral oscillators in intact as well as in SCN-ablated PER2::LUC mice. MA administration shifted the phases of SCN, cornea, pineal, pituitary, kidney, and salivary glands in intact animals. When the SCN was ablated, disrupted phase relationships among peripheral oscillators were reinstated by MA treatment. When intact animals were subjected to restricted feeding, the phases of cornea, pineal, kidney, salivary gland, lung, and liver were shifted. In SCN-lesioned restricted-fed mice, phases of all of the tissues shifted such that they aligned with the time of the meal. Taken together, these data show that FEO and MASCO are strong circadian pacemakers able to regulate the phases of peripheral oscillators.

摘要

在哺乳动物中,认为视交叉上核(SCN)中的起搏器是行为、生理和分子节律的必要条件。然而,有相当多的证据表明,时间性食物限制(限制喂养[RF])和慢性甲基苯丙胺(MA)可以在没有 SCN 的情况下驱动运动活动、体温和内分泌功能的昼夜节律。这表明存在 SCN 以外的起搏器:食物可诱导振荡器(FEO)和甲基苯丙胺敏感的昼夜振荡器(MASCO)。在这里,我们表明这些 SCN 以外的起搏器控制着完整的以及 SCN 切除的 PER2::LUC 小鼠中周围振荡器的相位。MA 给药会改变完整动物的 SCN、角膜、松果体、垂体、肾脏和唾液腺的相位。当 SCN 被切除时,MA 处理会重新建立周围振荡器之间的相位关系。当完整的动物受到限制喂养时,角膜、松果体、肾脏、唾液腺、肺和肝的相位会发生变化。在 SCN 损伤的限制喂养小鼠中,所有组织的相位都发生了变化,与进餐时间一致。总之,这些数据表明,FEO 和 MASCO 是强大的昼夜节律起搏器,能够调节周围振荡器的相位。

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