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Antioxidant N-acetyl-L-cysteine ameliorates symptoms of premature aging associated with the deficiency of the circadian protein BMAL1

机译:抗氧化剂N-乙酰-L-半胱氨酸可改善早产儿症状 与昼夜节律蛋白BMAL1缺乏有关的衰老

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摘要

Deficiency of the circadian clock protein BMAL1 leads to premature aging and increased levels of reactivate oxygen species in several tissues of mice. In order to investigate the role of oxidative stress in accelerated aging and development of age-related pathologies, we continuously administered the antioxidant N-acetyl-L-cysteine toBmal1-deficient mice through their entire lifespan by supplementing drinking water. We found that the life long treatment with antioxidant significantly increased average and maximal lifespan and reduced the rate of age-dependent weight loss and development of cataracts. At the same time, it had no effect on time of onset and severity of other age-related pathologies characteristic of Bmal1-/- mice, such as joint ossification, reduced hair regrowth and sarcopenia. We conclude that chronic oxidative stress affects longevity and contributes to the development of at least some age-associated pathology, although ROS-independent mechanisms may also play a role. Our bioinformatics analysis identified the presence of a conservative E box element in the promoter regions of several genes encoding major antioxidant enzymes. We speculate that BMAL1 controls antioxidant defense by regulating the expression of major antioxidant enzymes.
机译:昼夜节律蛋白BMAL1的缺乏会导致小鼠若干组织中的过早衰老和增加的活性氧水平。为了研究氧化应激在加速衰老和与年龄有关的病理过程中的作用,我们通过补充饮用水向Bmal1缺乏症小鼠的整个生命周期连续施用抗氧化剂N-乙酰-L-半胱氨酸。我们发现使用抗氧化剂进行的终身治疗显着提高了平均寿命和最大寿命,并降低了年龄相关的体重减轻和白内障的发生率。同时,它对Bmal1-/-小鼠的其他年龄相关病理特征的发作时间和严重程度没有影响,例如关节骨化,毛发再生减少和肌肉减少症。我们得出的结论是,尽管与ROS无关的机制也可能起作用,但慢性氧化应激会影响寿命并有助于发展至少一些与年龄相关的病理学。我们的生物信息学分析确定了保守的E盒元素存在于 编码主要抗氧化酶的几个基因的启动子区域。我们推测BMAL1通过 调节主要抗氧化酶的表达。

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