Bioinformatics Institute (BII), A*STAR, Singapore 138671, Singapore.
Singapore Institute of Food and Biotechnology Innovation (SIFBI), A*STAR, Singapore 138669, Singapore.
Cells. 2022 Mar 2;11(5):862. doi: 10.3390/cells11050862.
Aging is the greatest challenge to humankind worldwide. Aging is associated with a progressive loss of physiological integrity due to a decline in cellular metabolism and functions. Such metabolic changes lead to age-related diseases, thereby compromising human health for the remaining life. Thus, there is an urgent need to identify geroprotectors that regulate metabolic functions to target the aging biological processes. Nutrients are the major regulator of metabolic activities to coordinate cell growth and development. Iron is an important nutrient involved in several biological functions, including metabolism. In this study using yeast as an aging model organism, we show that iron supplementation delays aging and increases the cellular lifespan. To determine how iron supplementation increases lifespan, we performed a gene expression analysis of mitochondria, the main cellular hub of iron utilization. Quantitative analysis of gene expression data reveals that iron supplementation upregulates the expression of the mitochondrial tricarboxylic acid (TCA) cycle and electron transport chain (ETC) genes. Furthermore, in agreement with the expression profiles of mitochondrial genes, ATP level is elevated by iron supplementation, which is required for increasing the cellular lifespan. To confirm, we tested the role of iron supplementation in the AMPK knockout mutant. AMPK is a highly conserved controller of mitochondrial metabolism and energy homeostasis. Remarkably, iron supplementation rescued the short lifespan of the AMPK knockout mutant and confirmed its anti-aging role through the enhancement of mitochondrial functions. Thus, our results suggest a potential therapeutic use of iron supplementation to delay aging and prolong healthspan.
衰老是全世界人类面临的最大挑战。衰老是由于细胞代谢和功能下降导致生理完整性逐渐丧失而引起的。这些代谢变化导致与年龄相关的疾病,从而损害人类的剩余寿命健康。因此,迫切需要识别调节代谢功能的保护剂,以针对衰老的生物过程。营养素是调节代谢活动以协调细胞生长和发育的主要调节剂。铁是参与包括代谢在内的多种生物学功能的重要营养素。在这项使用酵母作为衰老模型生物的研究中,我们表明铁补充剂可延缓衰老并延长细胞寿命。为了确定铁补充剂如何延长寿命,我们对线粒体(铁利用的主要细胞中心)进行了基因表达分析。线粒体基因表达数据的定量分析表明,铁补充剂上调了三羧酸(TCA)循环和电子传递链(ETC)基因的表达。此外,与线粒体基因的表达谱一致,铁补充剂增加了 ATP 水平,这是增加细胞寿命所必需的。为了证实这一点,我们测试了铁补充剂在 AMPK 敲除突变体中的作用。AMPK 是一种高度保守的线粒体代谢和能量稳态控制器。值得注意的是,铁补充剂挽救了 AMPK 敲除突变体的短寿命,并通过增强线粒体功能证实了其抗衰老作用。因此,我们的研究结果表明,铁补充剂具有潜在的治疗用途,可以延缓衰老并延长健康寿命。