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Human NEIL3 Gene Expression Regulated by Epigenetic-Like Oxidative DNA Modification

机译:人neil3基因表达通过表观遗传氧化DNA改性调节

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摘要

The NEIL3 DNA repair gene is induced in cells or animal models experiencing oxidative or inflammatory stress along with oxidation of guanine (G) to 8-oxo-7,8-dihydroguanine (OG) in the genome. We hypothesize that a G-rich promoter element that is a potential G-quadruplexforming sequence (PQS) in NEIL3 is a site for introduction of OG with epigenetic-like potential for gene regulation. Activation occurs when OG is formed in the NEIL3 PQS located near the transcription start site. Oxidative stress either introduced by TNF alpha or synthetically incorporated into precise locations focuses the base excision repair process to read and catalyze removal of OG via OG-glycosylase I (OGG1), yielding an abasic site (AP). Thermodynamic studies showed that AP destabilizes the duplex, enabling a structural transition of the sequence to a G-quadruplex (G4) fold that positions the AP in a loop facilitated by the NEIL3 PQS having five G runs in which the four unmodified runs adopt a stable G4. This presents AP to apurinic/apyrimidinic endonuclease 1 (APE1) that poorly cleaves the AP backbone in this context according to in vitro studies, allowing the protein to function as a trans activator of transcription. The proposal is supported by chemical studies in cellulo and in vitro. Activation of NEIL3 expression via the proposed mechanism allows cells to respond to mutagenic DNA damage removed by NEIL3 associated with oxidative or inflammatory stress. Lastly, inspection of many mammalian genomes identified conservation of the NEIL3 PQS, suggesting this sequence was favorably selected to function as a redox switch with OG as the epigenetic-like regulatory modification.
机译:Neil3 DNA修复基因在经历氧化或炎症应激的细胞或动物模型中诱导,以及基因组中的鸟嘌呤(g)氧化至8-氧代-7,8-二氢胍(OG)。我们假设Neil3中富含G-Quadrepleming序列(PQs)的G丰富的启动子元素是用于引入og的基因调控的表观遗传电位的部位。当在位于转录开始站点附近的Neil3 PQs中形成OG时,发生激活。通过TNFα引入或合成掺入精确位置的氧化应激聚焦基础切除修复过程,通过OG-Glycosyl酶I(OGG1)来读取和催化OG的除去,产生脱脂位点(AP)。热力学研究表明,AP不稳定双工,使序列的结构转变为G-QuadRuple(G4)折叠,该G-Quadruple(G4)折叠定位由Neil3 PQS的循环中的循环中的AP,其中具有五个未修改的循环采用稳定G4。这向AP呈上对膜/亚嘌呤蛋白内切核酸酶的1(APE1),其根据体外研究,允许蛋白质作为转录的反式激活剂来粘附在这种情况下不良骨干。该提案得到了纤维素和体外化学研究的支持。通过所提出的机制激活NeiL3表达允许细胞响应与氧化或炎症应激相关的NeiL3除去的诱变DNA损伤。最后,对许多哺乳动物基因组的检查确定了Neil3 PQs的守恒,表明该序列是有利选择的,以用作具有OG的氧化还原开关作为表观遗传的调节改性。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第28期|11036-11049|共14页
  • 作者单位

    Univ Utah Dept Chem Salt Lake City UT 84112 USA;

    Univ Utah Dept Chem Salt Lake City UT 84112 USA;

    Univ Utah Dept Chem Salt Lake City UT 84112 USA;

    Univ Utah Dept Chem Salt Lake City UT 84112 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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