Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology, Barcelona, Spain.
Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology, Barcelona, Spain; ICREA, Catalan Institution for Research and Advanced Studies, Barcelona, Spain.
J Mol Biol. 2020 May 29;432(12):3661-3679. doi: 10.1016/j.jmb.2019.12.036. Epub 2019 Dec 27.
The mammalian circadian clockwork has evolved as a timing system that allows the daily environmental changes to be anticipated so that behavior and tissue physiology can be adjusted accordingly. The circadian clock synchronizes the function of all cells within tissues in order to temporally separate preclusive and potentially harmful physiologic processes and to establish a coherent temporal organismal physiology. Thus, the proper functioning of the circadian clockwork is essential for maintaining cellular and tissue homeostasis. Importantly, aging reduces the robustness of the circadian clock, resulting in disturbed sleep-wake cycles, a lowered capacity to synchronize circadian rhythms in peripheral tissues, and reprogramming of the circadian clock output at the molecular function levels. These circadian clock-dependent behavioral and molecular changes in turn further accelerate the process of aging. Here we review the current knowledge about how aging affects the circadian clock, how the functional decline of the circadian clock affects aging, and how the circadian clock machinery and the molecular processes that underlie aging are intertwined.
哺乳动物的生物钟已进化为一种计时系统,它可以预测每日的环境变化,从而调整行为和组织生理学。生物钟使组织内所有细胞的功能同步,以便在时间上分隔排他性和潜在有害的生理过程,并建立一个连贯的时间生物体生理学。因此,生物钟的正常运作对于维持细胞和组织的内稳态至关重要。重要的是,衰老会降低生物钟的稳健性,导致睡眠-觉醒周期紊乱、外周组织的昼夜节律同步能力下降以及分子功能水平上的生物钟输出重新编程。这些生物钟依赖性的行为和分子变化反过来又进一步加速了衰老过程。在这里,我们回顾了关于衰老如何影响生物钟、生物钟功能下降如何影响衰老以及生物钟机制和衰老的分子过程如何相互交织的现有知识。