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Cellular oxidative stress response mediates radiosensitivity in Fus1-deficient mice

机译:细胞氧化应激反应介导Fus1缺陷小鼠的放射敏感性。

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摘要

Mechanism of radiosensitivity of normal tissues, a key factor in determining the toxic side effects of cancer radiotherapy, is not fully understood. We recently demonstrated that deficiency of mitochondrial tumor suppressor, Fus1, increases radiosensitivity at the organismal, tissue and cellular levels. Since Fus1-deficient mice and cells exhibit high levels of oxidative stress, we hypothesized that dysregulation of cellular antioxidant defenses may contribute to the increased radiosensitivity. To address this potential mechanism, we treated the Fus1 KO mice with an inhibitor of pathogenic oxidative reactions, pyridoxamine (PM). Treatment with PM ameliorated IR-induced damage to GI epithelium of Fus1 KO mice and significantly increased the survival of irradiated mice. In cultured Fus1 KO epithelial cells, IR-induced oxidative stress was enhanced because of inadequate cellular antioxidant defenses, such as low levels and/or activities of cytochrome C, Sod 2 and STAT3. This resulted in dysregulation of IR-induced DNA-damage response and DNA synthesis. Treatment of Fus1 KO cells with PM or Sod 2 mimetic Tempol normalized the oxidative stress response, thus compensating to a significant degree for inadequate antioxidant response. Our findings using Fus1 KO radiosensitive mice suggest that radiosensitivity is mediated via dysregulation of antioxidant response and defective redox homeostasis.
机译:正常组织的放射敏感性机制是决定癌症放射治疗毒性副作用的关键因素,目前尚未完全了解。我们最近证明,线粒体肿瘤抑制因子Fus1的缺乏会增加机体,组织和细胞水平的放射敏感性。由于缺乏Fus1的小鼠和细胞表现出高水平的氧化应激,我们假设细胞抗氧化剂防御功能失调可能有助于增加放射敏感性。为了解决这个潜在的机制,我们用致病性氧化反应抑制剂吡ido胺(PM)处理了Fus1 KO小鼠。 PM的治疗减轻了IR诱导的Fus1 KO小鼠胃肠上皮的损伤,并显着提高了辐照小鼠的存活率。在培养的Fus1 KO上皮细胞中,IR诱导的氧化应激增强是由于细胞抗氧化剂防御功能不足,例如细胞色素C,Sod 2和STAT3的水平低和/或活性不足。这导致IR诱导的DNA损伤反应和DNA合成失调。用PM或Sod 2模拟物Tempol处理Fus1 KO细胞可正常化氧化应激反应,从而在很大程度上补偿了不足的抗氧化剂反应。我们使用Fus1 KO放射敏感性小鼠的发现表明,放射敏感性是通过抗氧化反应的失调和有缺陷的氧化还原稳态而介导的。

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