Lee Kiwon, Kim Myungjin
Department of Molecular & Integrative Physiology, University of Michigan, Ann Arbor, MI 48109, USA.
Biomolecules. 2025 Feb 11;15(2):261. doi: 10.3390/biom15020261.
The Irisin/FNDC5 protein family has emerged as a pivotal link between exercise and the prevention of age-associated diseases. Irisin is highly expressed during exercise from skeletal and cardiac muscle cells, playing a critical role in mediating systemic health benefits through its actions on various tissues. However, Irisin levels decline with age, correlating with a heightened incidence of diseases such as muscle weakness, cardiovascular disorders, and neurodegeneration. Notably, the administration of Irisin has shown significant potential in both preventing and treating these conditions. Recently, an Irisin/FNDC5 homolog was identified in an invertebrate model, providing valuable insights into its conserved role in exercise physiology. Importantly, Irisin/FNDC5 has been demonstrated to regulate autophagy-a process essential for clearing excessive nutrients, toxic aggregates, and dysfunctional organelles-in both flies and mammals. Dysregulated autophagy is often implicated in age-related diseases, highlighting its relevance to Irisin/FNDC5's functions. These findings deepen our understanding of Irisin/FNDC5's roles and its potential as a therapeutic target for mitigating aging-related health decline. Further studies are needed to elucidate the precise mechanisms by which Irisin regulates autophagy and its broader impact on physiological aging and related diseases.
鸢尾素/FNDC5蛋白家族已成为运动与预防年龄相关疾病之间的关键纽带。鸢尾素在运动期间于骨骼肌和心肌细胞中高表达,通过其对各种组织的作用,在介导全身健康益处方面发挥着关键作用。然而,鸢尾素水平会随着年龄增长而下降,这与肌肉无力、心血管疾病和神经退行性变等疾病发病率的升高相关。值得注意的是,鸢尾素的施用在预防和治疗这些病症方面已显示出巨大潜力。最近,在一个无脊椎动物模型中鉴定出了一种鸢尾素/FNDC5同源物,这为其在运动生理学中的保守作用提供了有价值的见解。重要的是,鸢尾素/FNDC5已被证明在果蝇和哺乳动物中均能调节自噬——这是清除过量营养物质、有毒聚集体和功能失调细胞器所必需的过程。自噬失调通常与年龄相关疾病有关,凸显了其与鸢尾素/FNDC5功能的相关性。这些发现加深了我们对鸢尾素/FNDC5作用及其作为减轻衰老相关健康衰退治疗靶点潜力的理解。需要进一步研究以阐明鸢尾素调节自噬的精确机制及其对生理性衰老和相关疾病的更广泛影响。