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跨神经内分泌系统和视交叉上核回路的昼夜节律时钟对话:分子时钟与电膜时钟之间的神秘通信

Circadian Tick-Talking Across the Neuroendocrine System and Suprachiasmatic Nuclei Circuits: The Enigmatic Communication Between the Molecular and Electrical Membrane Clocks.

作者信息

Belle M D C

机构信息

Faculty of Life Sciences, University of Manchester, Manchester, UK.

出版信息

J Neuroendocrinol. 2015 Jul;27(7):567-76. doi: 10.1111/jne.12279.

Abstract

As with many processes in nature, appropriate timing in biological systems is of paramount importance. In the neuroendocrine system, the efficacy of hormonal influence on major bodily functions, such as reproduction, metabolism and growth, relies on timely communication within and across many of the brain's homeostatic systems. The activity of these circuits is tightly orchestrated with the animal's internal physiological demands and external solar cycle by a master circadian clock. In mammals, this master clock is located in the hypothalamic suprachiasmatic nucleus (SCN), where the ensemble activity of thousands of clock neurones generates and communicates circadian time cues to the rest of the brain and body. Many regions of the brain, including areas with neuroendocrine function, also contain local daily clocks that can provide feedback signals to the SCN. Although much is known about the molecular processes underpinning endogenous circadian rhythm generation in SCN neurones and, to a lesser extent, extra-SCN cells, the electrical membrane clock that acts in partnership with the molecular clockwork to communicate circadian timing across the brain is poorly understood. The present review focuses on some circadian aspects of reproductive neuroendocrinology and processes involved in circadian rhythm communication in the SCN, aiming to identify key gaps in our knowledge of cross-talk between our daily master clock and neuroendocrine function. The intention is to highlight our surprisingly limited understanding of their interaction in the hope that this will stimulate future work in these areas.

摘要

与自然界中的许多过程一样,生物系统中的适时性至关重要。在神经内分泌系统中,激素对诸如生殖、代谢和生长等主要身体功能的影响效果,依赖于大脑众多稳态系统内部以及它们之间的及时通讯。这些神经回路的活动由一个主生物钟与动物的内部生理需求和外部太阳周期紧密协调。在哺乳动物中,这个主生物钟位于下丘脑视交叉上核(SCN),数千个生物钟神经元的整体活动在那里产生昼夜节律时间线索,并将其传递给大脑和身体的其他部分。大脑的许多区域,包括具有神经内分泌功能的区域,也含有局部昼夜节律时钟,这些时钟可以向SCN提供反馈信号。尽管对于SCN神经元以及在较小程度上对于SCN外细胞中内源性昼夜节律产生的分子过程已经有很多了解,但与分子时钟机制协同作用以在整个大脑中传递昼夜节律时间的电膜时钟却知之甚少。本综述聚焦于生殖神经内分泌学的一些昼夜节律方面以及SCN中昼夜节律通讯所涉及的过程,旨在找出我们在日常主生物钟与神经内分泌功能之间相互作用的知识方面的关键空白。目的是强调我们对它们相互作用的理解惊人地有限,希望这能激发这些领域未来的研究工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/679c/4973835/8f2d5b91420c/JNE-27-567-g001.jpg

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