Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon, South Korea.
J Neurogenet. 2020 Sep-Dec;34(3-4):518-526. doi: 10.1080/01677063.2020.1781849. Epub 2020 Jul 7.
Temperature affects animal physiology, including aging and lifespan. How temperature and biological systems interact to influence aging and lifespan has been investigated using model organisms, including the nematode . In this review, we discuss mechanisms by which diverse cellular factors modulate the effects of ambient temperatures on aging and lifespan in thermosensory neurons alleviate lifespan-shortening effects of high temperatures via sterol endocrine signaling and probably through systemic regulation of cytosolic proteostasis. At low temperatures, displays a long lifespan by upregulating the cold-sensing TRPA channel, lipid homeostasis, germline-mediated prostaglandin signaling, and autophagy. In addition, co-chaperone p23 amplifies lifespan changes affected by high and low temperatures. Our review summarizes how external temperatures modulate lifespan and provides information regarding responses of biological processes to temperature changes, which may affect health and aging at an organism level.
温度会影响动物的生理机能,包括衰老和寿命。科学家利用线虫等模式生物研究了温度与生物系统相互作用影响衰老和寿命的机制。在这篇综述中,我们讨论了不同的细胞因子通过何种机制调节环境温度对衰老和寿命的影响。热感觉神经元中的固醇内分泌信号转导和可能通过细胞质蛋白稳态的全身调节,缓解高温对寿命的缩短作用。在低温下,上调冷感觉 TRPA 通道、脂类稳态、生殖细胞介导的前列腺素信号和自噬,使线虫的寿命延长。此外,伴侣蛋白 p23 放大了高温和低温对寿命变化的影响。我们的综述总结了外部温度如何调节线虫的寿命,并提供了有关生物过程对温度变化的反应的信息,这些信息可能会影响生物体水平的健康和衰老。