首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Chronic sub-lethal oxidative stress by spermine oxidase overactivity induces continuous DNA repair and hypersensitivity to radiation exposure
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Chronic sub-lethal oxidative stress by spermine oxidase overactivity induces continuous DNA repair and hypersensitivity to radiation exposure

机译:精胺氧化酶过度活跃导致的慢性亚致死性氧化应激诱导DNA连续修复和对放射线过敏

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摘要

In the aging process and in most degenerative diseases, the oxidant by-products of cellular metabolism lead to oxidative stress. Oxidative stress plays an important role in switching from cell proliferation to its opposite outcome, cell death. The metabolic pathways in charge of the interconversion and degradation of the polyamines are responsible for oxidant by-products. In the past few years, spermine metabolism has been found closely related to DNA oxidation and apoptosis. Moreover, that the ectopical expression of murine spermine oxidase induced DNA damage in the neuroblastoma cell line, and this was uncoupled with any increase in cell mortality, thus suggests an activation of DNA repair. In this work, we provide new evidence showing that only spermine oxidase overactivity can deliver sub-lethal chronic DNA damage and repair without affecting transcriptional and enzymatic levels of the PA key regulatory enzymes ODC and SSAT. Chronic sub-lethal DNA damage is below the cell cycle arrest induction threshold, but is able to activate apurinic/apyrimidinic endonuclease protein (APE1) and γH2AX. Of therapeutic interest, the chronic sub-lethal DNA damage and activation of the repair processes are in turn responsible for inducing hypersensitivity after exposure to radiation with no induction of adaptive response to damage.
机译:在衰老过程中和大多数退行性疾病中,细胞代谢的氧化副产物导致氧化应激。氧化应激在从细胞增殖转变为相反的结果(细胞死亡)中起着重要作用。负责多胺相互转化和降解的代谢途径负责氧化剂副产物。在过去的几年中,已发现精胺代谢与DNA氧化和凋亡密切相关。而且,鼠精胺氧化酶的异位表达诱导了神经母细胞瘤细胞系中的DNA损伤,并且这与细胞死亡率的任何增加均不相关,因此暗示了DNA修复的激活。在这项工作中,我们提供了新的证据,表明只有精胺氧化酶过度活跃才能传递亚致死性的慢性DNA损伤和修复,而不会影响PA关键调节酶ODC和SSAT的转录和酶促水平。慢性亚致死性DNA损伤低于细胞周期停滞诱导阈值,但能够激活嘌呤/嘧啶核糖核酸内切酶蛋白(APE1)和γH2AX。具有治疗意义的是,慢性亚致死性DNA损伤和修复过程的激活又导致在暴露于辐射后诱导超敏反应,而没有诱导对损伤的适应性反应。

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