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Age-dependent increase of 8-oxoguanine-, hypoxanthine-, and uracil- DNA glycosylase activities in liver extracts from OXYS rats with inherited overgeneration of free radicals and Wistar rats.

机译:具有遗传性自由基过度生成的OXYS大鼠肝脏提取物中肝脏提取物中8-氧代鸟嘌呤,次黄嘌呤和尿嘧啶DNA糖基化酶活性的年龄依赖性增加。

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BACKGROUND: Oxygen free radicals have been hypothesized to play an important role in the process of aging. MATERIAL/METHODS: To investigate the correlation between oxidative stress and accumulation of DNA damage we determined age-dependent levels of activities eliminating 8-oxoguanine, hypoxanthine and uracil from DNA in liver cells from OXYS rats, which are characterized by inherited overgeneration of free radicals, in comparison with those of control Wistar rats. RESULTS: A pronounced difference in the specificity of mitochondrial and nuclear 8-oxoguanine DNA glycosylase/AP lyase activities were revealed in both cases. Our results suggest the induction of an 8-oxoG-, uracil- and hypoxanthine-specific repair pathway with age in both types of rats. The levels of 8-oxoguanine DNA glycosylase/AP lyase activities in nuclear extracts from both strains of rats are comparable and approximately tenfold higher than in mitochondrial extracts. On the contrary, 8-oxoguanine DNA glycosylase/AP lyase activity in OXYS mitochondrial extracts was remarkably higher than that from old Wistar rats, and a significant increase of this activity occurs earlier in OXYS than in Wistar rats. CONCLUSIONS: Our results are consistent with the shorter life-span of OXYS rats, and with the mitochondrial theory of aging, which postulates that the accumulation of DNA damage in mitochondrial genomes leads to mitochondrial dysfunction and accelerates the process of aging.
机译:背景:已经假设氧自由基在衰老过程中起重要作用。材料/方法:为了研究氧化应激与DNA损伤积累之间的相关性,我们确定了年龄依赖性的活动水平,这些活动消除了OXYS大鼠肝细胞DNA中的8-氧代鸟嘌呤,次黄嘌呤和尿嘧啶,其特征是自由基的遗传性过度生成与对照组Wistar大鼠相比。结果:在这两种情况下,线粒体和核8-氧鸟嘌呤DNA糖基化酶/ AP裂解酶活性的特异性均存在明显差异。我们的结果表明,在两种类型的大鼠中,随着年龄的增长,都诱导了8-oxoG-,尿嘧啶和次黄嘌呤特异性修复途径。来自两个大鼠品系的核提取物中的8-氧鸟嘌呤DNA糖基化酶/ AP裂解酶活性的水平是可比的,并且比线粒体提取物中的约高十倍。相反,OXYS线粒体提取物中的8-氧鸟嘌呤DNA糖基化酶/ AP裂解酶活性明显高于老Wistar大鼠,而在OXYS中这种活性的显着增加要早于Wistar大鼠。结论:我们的结果与OXYS大鼠寿命较短,线粒体衰老理论相符,后者推测线粒体基因组中DNA的积累会导致线粒体功能障碍并加速衰老过程。

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