Fraczek Paula M, Duran Pamela, Yang Benjamin A, Ferre Valeria, Alawieh Leanne, Castor-Macias Jesus A, Wong Vivian T, Guzman Steve D, Piotto Celeste, Itsani Klimentini, Larouche Jacqueline A, Aguilar Carlos A
Department of Biomedical Engineering.
Biointerfaces Institute, and.
JCI Insight. 2025 Mar 25;10(9). doi: 10.1172/jci.insight.183706. eCollection 2025 May 8.
Adult stem cells decline in number and function in old age, and identifying factors that can delay or revert age-associated adult stem cell dysfunction are vital for maintaining a healthy lifespan. Here we show that vitamin A, a micronutrient that is derived from diet and metabolized into retinoic acid, acts as an antioxidant and transcriptional regulator in muscle stem cells. We first show that obstruction of dietary vitamin A in young animals drives mitochondrial and cell cycle dysfunction in muscle stem cells that mimics old age. Next, we pharmacologically targeted retinoic acid signaling in myoblasts and aged muscle stem cells ex vivo and in vivo and observed reductions in oxidative damage, enhanced mitochondrial function, and improved maintenance of quiescence through fatty acid oxidation. We next detected that the receptor for vitamin A-derived retinol, stimulated by retinoic acid 6 or Stra6, was diminished with muscle stem cell activation and in old age. To understand the relevance of Stra6 loss, we knocked down Stra6 and observed an accumulation of mitochondrial reactive oxygen species, as well as changes in mitochondrial morphology and respiration. These results demonstrate that vitamin A regulates mitochondria and metabolism in muscle stem cells and highlight a unique mechanism connecting stem cell function with vitamin intake.
成体干细胞的数量和功能在老年时会下降,确定能够延缓或逆转与年龄相关的成体干细胞功能障碍的因素对于维持健康的寿命至关重要。在此,我们表明维生素A,一种从饮食中获取并代谢为视黄酸的微量营养素,在肌肉干细胞中作为抗氧化剂和转录调节因子发挥作用。我们首先表明,幼年动物饮食中维生素A的阻断会导致肌肉干细胞中的线粒体和细胞周期功能障碍,类似于老年状态。接下来,我们在体外和体内对成肌细胞和衰老的肌肉干细胞中的视黄酸信号进行药理学靶向,观察到氧化损伤减少、线粒体功能增强以及通过脂肪酸氧化改善静止状态的维持。我们接下来检测到,由视黄酸6或Stra6刺激的维生素A衍生的视黄醇受体在肌肉干细胞激活时和老年时会减少。为了了解Stra6缺失的相关性,我们敲低Stra6并观察到线粒体活性氧的积累以及线粒体形态和呼吸的变化。这些结果表明维生素A调节肌肉干细胞中的线粒体和代谢,并突出了一种将干细胞功能与维生素摄入联系起来的独特机制。