Center of Brain, Behavior and Metabolism, University of Lübeck, Institute of Neurobiology, Marie Curie Street, 23562, Lübeck, Germany.
Cell Mol Life Sci. 2021 May;78(10):4563-4587. doi: 10.1007/s00018-021-03800-2. Epub 2021 Mar 8.
The circadian clock exerts an important role in systemic homeostasis as it acts a keeper of time for the organism. The synchrony between the daily challenges imposed by the environment needs to be aligned with biological processes and with the internal circadian clock. In this review, it is provided an in-depth view of the molecular functioning of the circadian molecular clock, how this system is organized, and how central and peripheral clocks communicate with each other. In this sense, we provide an overview of the neuro-hormonal factors controlled by the central clock and how they affect peripheral tissues. We also evaluate signals released by peripheral organs and their effects in the central clock and other brain areas. Additionally, we evaluate a possible communication between peripheral tissues as a novel layer of circadian organization by reviewing recent studies in the literature. In the last section, we analyze how the circadian clock can modulate intracellular and tissue-dependent processes of metabolic organs. Taken altogether, the goal of this review is to provide a systemic and integrative view of the molecular clock function and organization with an emphasis in metabolic tissues.
生物钟在维持机体的整体内环境稳定中发挥着重要作用,它是生物节律的守护者。为了使机体能够适应环境的日常挑战,就需要将生物过程与内部生物钟同步。在本篇综述中,我们深入探讨了生物钟的分子功能、系统组织以及中枢钟和外周钟之间的相互通讯。我们概述了中枢钟控制的神经激素因子及其对周围组织的影响,还评估了外周器官释放的信号及其对中枢钟和其他脑区的影响。此外,我们通过回顾文献中的最新研究,评估了外周组织之间通讯作为一种新的生物钟组织层次的可能性。在最后一节中,我们分析了生物钟如何调节代谢器官的细胞内和组织依赖性过程。总的来说,本篇综述的目的是提供一个系统和综合的生物钟功能和组织的分子视图,重点关注代谢组织。