Kittana Monia, Apostolopoulos Vasso, Stojanovska Lily
Department of Nutrition and Health, College of Medicine and Health Sciences, United Arab Emirates University, Al Ain, United Arab Emirates.
Institute for Health and Sport, Victoria University, Melbourne, VIC, Australia.
Subcell Biochem. 2024;107:173-181. doi: 10.1007/978-3-031-66768-8_8.
Calorie restriction (CR), as a dietary approach of reducing caloric intake while maintaining nutritional adequacy, has gained significant attention due to its potential role in promoting longevity and enhancing health. Central to the beneficial effects of CR is SIRT1. SIRT1 belongs to a family of NAD+ dependent deacetylases and plays an important role in regulating various cellular processes, including histone deacetylation, oxidative stress response, and mitochondrial biogenesis. This chapter reviews the evidence regarding the effect of CR on SIRT1 expression and mitochondrial biogenesis. Both pre-clinical and human studies have consistently demonstrated that CR promotes an increase in SIRT1 expression and activity in different tissues. This is also associated with other favourable health outcomes, such as delayed neurodegeneration and improved cognitive function. Moderate CR (25% restriction) has shown an impact on promoting mitochondrial biogenesis, reflected in markers such as mitochondrial DNA and transcription factors. However, this is reviewed in light of some methodological limitations, as data varied in response to different CR regimens. Herein, we highlight the potential of CR in up-regulating SIRT1 and promoting mitochondrial biogenesis, which can have significant implications for developing strategies to manage and promote healthy ageing.
热量限制(CR)作为一种在保持营养充足的同时减少热量摄入的饮食方法,因其在促进长寿和增进健康方面的潜在作用而备受关注。CR有益效果的核心是SIRT1。SIRT1属于NAD⁺依赖性脱乙酰酶家族,在调节各种细胞过程中发挥重要作用,包括组蛋白脱乙酰化、氧化应激反应和线粒体生物合成。本章综述了关于CR对SIRT1表达和线粒体生物合成影响的证据。临床前研究和人体研究均一致表明,CR可促进不同组织中SIRT1表达和活性的增加。这还与其他有利的健康结果相关,如延缓神经退行性变和改善认知功能。适度的热量限制(25%的限制)已显示出对促进线粒体生物合成有影响,这体现在线粒体DNA和转录因子等标志物上。然而,鉴于一些方法学上的局限性对其进行了综述,因为不同的热量限制方案的数据反应各不相同。在此,我们强调热量限制在上调SIRT1和促进线粒体生物合成方面的潜力,这对于制定管理和促进健康衰老的策略可能具有重要意义。