线粒体ROS
硒
化学
氧化磷酸化
活性氧
烟酰胺腺嘌呤二核苷酸磷酸
线粒体
硒缺乏症
细胞生物学
骨骼肌
肌肉萎缩
平衡
内科学
氧化应激
呼吸链
肌萎缩
肌动蛋白
NAD+激酶
生物化学
心肌细胞
萎缩
糖酵解
NADPH氧化酶
新陈代谢
调节器
硒蛋白
生物
烟酰胺腺嘌呤二核苷酸
内分泌学
作者
Huanyi Liu,Hao Wu,Ziyu Zhang,Shiwen Xu,Cong Zhou,Tong Xu
标识
DOI:10.1002/advs.202507283
摘要
Skeletal muscle atrophy in poultry is characterized by reduced muscle mass and fiber quantity, leading to substantial economic losses in poultry production worldwide. Selenium is an essential trace element that maintains muscle integrity; however, the mechanisms linking Se deficiency to muscle injury remain unclear. Selenoprotein T (SELENOT) is a key regulator of cellular redox homeostasis that has not been fully characterized in skeletal muscles. Se deficiency downregulates SELENOT expression, increases oxidative stress, and induces skeletal muscle atrophy via disulfidase pathways. SELENOT deficiency impaired mitochondrial respiratory chain function, causing mitochondrial reactive oxygen species (mtROS) overproduction, glucose metabolism reprogramming, and Nicotinamide Adenine Dinucleotide Phosphate (NADPH) metabolism disruption. These changes result in cysteine accumulation and disulfidptosis, which lead to abnormal actin disulfide bonding. TEMPO-mediated mtROS inhibition or NADPH supplementation partially rescues Se-deficiency-induced muscle atrophy. SELENOT overexpression alleviates the redox imbalance, NADPH dysfunction, disulfidptosis, and myotube atrophy in Se-deficient cells, whereas rotenone-induced mtROS activation or BAY-876-mediated NADPH inhibition reverses these protective effects. The SELENOT/mtROS/NADPH axis is crucial for Se-deficiency-induced muscle atrophy. This study provides mechanistic insights into muscle-wasting disorders and potential therapeutic targets.
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