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随着衰老和废用性萎缩,骨骼肌中的铁含量增加以及RNA氧化损伤。

Increased iron content and RNA oxidative damage in skeletal muscle with aging and disuse atrophy.

作者信息

Hofer Tim, Marzetti Emanuele, Xu Jinze, Seo Arnold Y, Gulec Sukru, Knutson Mitchell D, Leeuwenburgh Christiaan, Dupont-Versteegden Esther E

机构信息

Department of Aging and Geriatrics, Division of Biology of Aging, Genomics and Biomarkers Core of The Institute on Aging, University of Florida, Gainesville, USA.

出版信息

Exp Gerontol. 2008 Jun;43(6):563-70. doi: 10.1016/j.exger.2008.02.007. Epub 2008 Feb 29.

Abstract

Muscle atrophy with aging or disuse is associated with deregulated iron homeostasis and increased oxidative stress likely inflicting damage to nucleic acids. Therefore, we investigated RNA and DNA oxidation, and iron homeostasis in gastrocnemius muscles. Disuse atrophy was induced in 6- and 32-month old male Fischer 344/Brown Norway rats by 14 days of hind limb suspension (HS). We show that RNA, but not DNA, oxidative damage increased 85% with age and 36% with HS in aged muscle. Additionally, non-heme iron levels increased 233% with aging and 83% with HS at old age, while staining for free iron was strongest in the smallest fibers. Simultaneously, the mRNA abundance of transferrin receptor-1 decreased by 80% with age and 48% with HS for young animals, while that of the hepcidin regulator hemojuvelin decreased 37% with age, but increased about 44% with disuse, indicating a dysregulation of iron homeostasis favoring increased intracellular free iron in atrophied muscles. RNA and DNA concentrations increased with age and were negatively correlated with muscle mass, whereas protein concentrations decreased with aging, indicating a preferential loss of protein compared to nucleic acids. Furthermore, xanthine oxidase activity increased with age, but not with HS, while mRNA abundance of the Y box-binding protein-1, which has been suggested to bind oxidized RNA, did not change with age or HS. These results suggest that RNA oxidation, possibly mediated by increased non-heme iron, might contribute to muscle atrophy due to disuse particularly in aged muscle.

摘要

衰老或废用导致的肌肉萎缩与铁稳态失调及氧化应激增加有关,氧化应激可能会对核酸造成损伤。因此,我们研究了腓肠肌中的RNA和DNA氧化以及铁稳态。通过对6个月和32个月大的雄性Fischer 344/布朗挪威大鼠进行14天的后肢悬吊(HS)来诱导废用性萎缩。我们发现,在老年肌肉中,RNA氧化损伤随年龄增长增加了85%,随HS增加了36%,而DNA氧化损伤则无此变化。此外,非血红素铁水平在老年时随年龄增长增加了233%,随HS增加了83%,而游离铁染色在最小的纤维中最强。同时,转铁蛋白受体-1的mRNA丰度在幼龄动物中随年龄下降了80%,随HS下降了48%,而铁调素调节因子血色素沉着症蛋白的mRNA丰度随年龄下降了37%,但随废用增加了约44%,这表明铁稳态失调,有利于萎缩肌肉中细胞内游离铁增加。RNA和DNA浓度随年龄增加,与肌肉质量呈负相关,而蛋白质浓度随年龄下降,表明与核酸相比蛋白质优先丢失。此外,黄嘌呤氧化酶活性随年龄增加,但不随HS增加,而被认为与氧化RNA结合的Y盒结合蛋白-1的mRNA丰度不随年龄或HS变化。这些结果表明,RNA氧化可能由非血红素铁增加介导,可能导致废用性肌肉萎缩,尤其是在老年肌肉中。

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