首页> 美国卫生研究院文献>Biomolecules >Human DNA Glycosylase NEIL1’s Interactions with Downstream Repair Proteins Is Critical for Efficient Repair of Oxidized DNA Base Damage and Enhanced Cell Survival
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Human DNA Glycosylase NEIL1’s Interactions with Downstream Repair Proteins Is Critical for Efficient Repair of Oxidized DNA Base Damage and Enhanced Cell Survival

机译:人类DNA糖基化酶NEIL1与下游修复蛋白的相互作用对于氧化DNA碱基损伤的有效修复和增强的细胞存活至关重要

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摘要

NEIL1 is unique among the oxidatively damaged base repair-initiating DNA glycosylases in the human genome due to its S phase-specific activation and ability to excise substrate base lesions from single-stranded DNA. We recently characterized NEIL1’s specific binding to downstream canonical repair and non-canonical accessory proteins, all of which involve NEIL1’s disordered C-terminal segment as the common interaction domain (CID). This domain is dispensable for NEIL1’s base excision and abasic (AP) lyase activities, but is required for its interactions with other repair proteins. Here, we show that truncated NEIL1 lacking the CID is markedly deficient in initiating in vitro repair of 5-hydroxyuracil (an oxidative deamination product of C) in a plasmid substrate compared to the wild-type NEIL1, thus suggesting a critical role of CID in the coordination of overall repair. Furthermore, while NEIL1 downregulation significantly sensitized human embryonic kidney (HEK) 293 cells to reactive oxygen species (ROS), ectopic wild-type NEIL1, but not the truncated mutant, restored resistance to ROS. These results demonstrate that cell survival and NEIL1-dependent repair of oxidative DNA base damage require interactions among repair proteins, which could be explored as a cancer therapeutic target in order to increase the efficiency of chemo/radiation treatment.
机译:NEIL1在人类基因组中被氧化破坏的碱基修复起始DNA糖基化酶中是独一无二的,这是因为它具有S期特异性激活和从单链DNA切除底物碱基损伤的能力。最近,我们表征了NEIL1与下游规范修复蛋白和非规范辅助蛋白的特异性结合,所有这些蛋白都涉及NEIL1的无序C末端片段作为共同相互作用域(CID)。该域对于NEIL1的碱基切除和无碱基(AP)裂解酶活性是必不可少的,但与其他修复蛋白的相互作用则是必需的。在这里,我们显示,与野生型NEIL1相比,缺少CID的截短NEIL1在启动质粒底物中的5-羟基尿嘧啶(C的氧化脱氨基产物)的体外修复方面明显缺乏,因此表明CID在整体维修的协调。此外,尽管NEIL1下调使人类胚胎肾脏(HEK)293细胞对活性氧(ROS)明显敏感,但异位野生型NEIL1而非截短的突变体恢复了对ROS的抗性。这些结果表明,细胞存活和氧化DNA碱基损伤的NEIL1依赖性修复都需要修复蛋白之间的相互作用,可以将其作为癌症治疗靶点进行研究,以提高化学/放射治疗的效率。

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