Doering Kelsie R S, Ermakova Glafira, Taubert Stefan
Centre for Molecular Medicine and Therapeutics, The University of British Columbia, Vancouver, BC, Canada.
Edwin S. H. Leong Centre for Healthy Aging, The University of British Columbia, Vancouver, BC, Canada.
Front Physiol. 2023 Aug 14;14:1241591. doi: 10.3389/fphys.2023.1241591. eCollection 2023.
The genome of encodes 284 nuclear hormone receptor, which perform diverse functions in development and physiology. One of the best characterized of these is NHR-49, related in sequence and function to mammalian hepatocyte nuclear factor 4α and peroxisome proliferator-activated receptor . Initially identified as regulator of lipid metabolism, including fatty acid catabolism and desaturation, additional important roles for NHR-49 have since emerged. It is an essential contributor to longevity in several genetic and environmental contexts, and also plays vital roles in the resistance to several stresses and innate immune response to infection with various bacterial pathogens. Here, we review how NHR-49 is integrated into pertinent signaling circuits and how it achieves its diverse functions. We also highlight areas for future investigation including identification of regulatory inputs that drive NHR-49 activity and identification of tissue-specific gene regulatory outputs. We anticipate that future work on this protein will provide information that could be useful for developing strategies to age-associated declines in health and age-related human diseases.
[某种生物]的基因组编码284种核激素受体,它们在发育和生理过程中发挥着多种功能。其中最具特征的之一是NHR-49,其在序列和功能上与哺乳动物肝细胞核因子4α和过氧化物酶体增殖物激活受体相关。NHR-49最初被鉴定为脂质代谢的调节因子,包括脂肪酸分解代谢和去饱和作用,此后又出现了其他重要作用。在多种遗传和环境背景下,它是寿命延长的重要贡献者,并且在抵抗多种应激以及对各种细菌病原体感染的先天免疫反应中也发挥着至关重要的作用。在这里,我们综述了NHR-49如何整合到相关信号通路中以及它如何实现其多种功能。我们还强调了未来研究的领域,包括确定驱动NHR-49活性的调节输入以及确定组织特异性基因调节输出。我们预计,未来对这种蛋白质的研究将提供有助于制定应对与年龄相关的健康下降和人类老年疾病策略的信息。