肌肉FOXO基因在运动对抗高盐摄入引起的骨骼肌和心脏年龄相关缺陷和死亡率中的作用

Deng-Tai Wen, Ying-Hui Gao, Jingfeng Wang, Shijie Wang, Qi Zhong, Wen-Qi Hou
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引用次数: 1

摘要

FOXO长期以来一直与衰老、运动和组织稳态有关,但肌肉FOXO基因在对抗高盐摄入(HSI)引起的骨骼肌、心脏和死亡率的年龄相关缺陷中的作用尚不清楚。本研究通过构建Mhc-GAL4/FOXO- uas过表达和Mhc-GAL4/FOXO- uas -RNAi体系,构建果蝇骨骼肌和心肌中FOXO基因的过表达和RNAi。测定各组骨骼肌和心脏功能、氧化和抗氧化平衡及线粒体稳态。结果表明,运动逆转了HSI引起的攀爬能力的年龄相关性下降和肌肉FOXO表达的下调。肌肉特异性FOXO- rnai (FOXO- rnai)和-过表达(FOXO- oe)促进或减缓与年龄相关的攀爬能力、心功能、骨骼肌和心脏结构损伤的下降,并伴随FOXO/PGC-1α/SDH和FOXO/SOD途径活性的抑制或激活,骨骼肌和心脏的氧化应激(ROS)增加或减少。在老龄HSI果蝇中,运动对骨骼肌和心脏的保护作用被FOXO-RNAi阻断。FOXO-OE延长了其寿命,但没有抵抗hsii诱导的寿命缩短。在FOXO-RNAi果蝇中,运动并没有改善hsii诱导的寿命缩短。因此,目前的研究结果证实,肌肉FOXO基因在对抗HSI诱导的骨骼肌和心脏年龄相关缺陷的运动中发挥了至关重要的作用,因为它决定了肌肉FOXO/SOD和FOXO/ pfc -1α/SDH途径的活性。肌肉FOXO基因也在运动对抗hsi诱导的衰老果蝇死亡中发挥了重要作用。
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Role of muscle FOXO gene in exercise against the skeletal muscle and cardiac age-related defects and mortality caused by high-salt intake in Drosophila.

FOXO has long been associated with aging, exercise, and tissue homeostasis, but it remains unclear what the role is of the muscle FOXO gene in E against high-salt intake(HSI)-induced age-related defects of the skeletal muscle, heart, and mortality. In this research, overexpression and RNAi of the FOXO gene in the skeletal and heart muscle of Drosophila were constructed by building Mhc-GAL4/FOXO-UAS-overexpression and Mhc-GAL4/FOXO-UAS-RNAi system. The skeletal muscle and heart function, the balance of oxidation and antioxidant, and mitochondrial homeostasis were measured. The results showed that exercise reversed the age-related decline in climbing ability and downregulation of muscle FOXO expression induced by HSI. Muscle-specific FOXO-RNAi (FOXO-RNAi) and -overexpression (FOXO-OE) promoted or slowed the age-related decline in climbing ability, heart function, and skeletal muscle and heart structure damage, which was accompanied by the inhibition or activation of FOXO/PGC-1α/SDH and FOXO/SOD pathway activity, and oxidative stress (ROS) increased or decreased in both skeletal muscle and heart. The protective effect of exercise on the skeletal muscle and heart was blocked by FOXO-RNAi in aged HSI flies. FOXO-OE prolonged its lifespan, but it did not resist the HSI-induced lifespan shortening. Exercise did not improve HSI-induced lifespan shortening in FOXO-RNAi flies. Therefore, current results confirmed that the muscle FOXO gene played a vital role in exercise against age-related defects of the skeletal muscle and heart induced by HSI because it determined the activity of muscle FOXO/SOD and FOXO/PGC-1α/SDH pathways. The muscle FOXO gene also played an important role in exercise against HSI-induced mortality in aging flies.

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