Department of Biochemistry, College of Medicine, The Catholic University of Korea, Seoul 06591; Institute for Aging and Metabolic Diseases, College of Medicine, The Catholic University of Korea, Seoul 06591; Department of Biomedicine & Health Sciences, College of Medicine, The Catholic University of Korea, Seoul 06591, Korea.
Department of Mechanical Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.
BMB Rep. 2023 Dec;56(12):651-656. doi: 10.5483/BMBRep.2023-0076.
Senescence, a cellular process through which damaged or dysfunctional cells suppress the cell cycle, contributes to aging or age-related functional decline. Cell metabolism has been closely correlated with aging processes, and it has been widely recognized that metabolic changes underlie the cellular alterations that occur with aging. Here, we report that fatty acid oxidation (FAO) serves as a critical regulator of cellular senescence and uncover the underlying mechanism by which FAO inhibition induces senescence. Pharmacological or genetic ablation of FAO results in a p53-dependent induction of cellular senescence in human fibroblasts, whereas enhancing FAO suppresses replicative senescence. We found that FAO inhibition promotes cellular senescence through acetyl-CoA, independent of energy depletion. Mechanistically, increased formation of autophagosomes following FAO inhibition leads to a reduction in SIRT1 protein levels, thereby contributing to senescence induction. Finally, we found that inhibition of autophagy or enforced expression of SIRT1 can rescue the induction of senescence as a result of FAO inhibition. Collectively, our study reveals a distinctive role for the FAO-autophagy-SIRT1 axis in the regulation of cellular senescence. [BMB Reports 2023; 56(12): 651-656].
衰老,是一种通过受损或功能失调的细胞抑制细胞周期的细胞过程,导致衰老或与年龄相关的功能下降。细胞代谢与衰老过程密切相关,人们广泛认识到,代谢变化是衰老过程中细胞变化的基础。在这里,我们报告称,脂肪酸氧化 (FAO) 是细胞衰老的关键调节剂,并揭示了 FAO 抑制诱导衰老的潜在机制。FAO 的药理学或基因缺失会导致人成纤维细胞中 p53 依赖性细胞衰老诱导,而增强 FAO 则抑制复制性衰老。我们发现,FAO 抑制通过乙酰辅酶 A 促进细胞衰老,而与能量耗竭无关。在机制上,FAO 抑制后自噬体的形成增加会导致 SIRT1 蛋白水平降低,从而导致衰老诱导。最后,我们发现,自噬抑制或 SIRT1 的强制表达可以挽救 FAO 抑制引起的衰老诱导。总之,我们的研究揭示了 FAO-自噬-SIRT1 轴在调节细胞衰老中的独特作用。[BMB 报告 2023; 56(12): 651-656]。