首页> 外文期刊>Journal of the American Chemical Society >Destabilization of DNA G-Quadruplexes by Chemical Environment Changes during Tumor Progression Facilitates Transcription
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Destabilization of DNA G-Quadruplexes by Chemical Environment Changes during Tumor Progression Facilitates Transcription

机译:肿瘤进展过程中化学环境变化引起的DNA G-四链体失稳促进转录。

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摘要

DNA G-quadruplex formation is highly responsive to surrounding conditions, particularly K~(+) concentration. Malignant cancer cells have a much lower K~(+) concentration than normal cells because of overexpression of a K~(+) channel; thus, G-quadruplexes may be unstable in cancer cells. Here, we physicochemically investigated how changes in intracellular chemical environments in vitro and in cells influence G-quadruplex formation and transcription during tumor progression. In vitro , the stable G-quadruplex formation inhibits transcription in a solution containing 150 mM KCl (normal condition). As K~(+) concentration decreases, which decreases G-quadruplex stability, transcript production from templates with G-quadruplex-forming potential increases. In normal cells, the trend in transcript productions was similar to that in in vitro experiments, with transcription efficiency inversely correlated with G-quadruplex stability. Interestingly, higher transcript levels were produced from templates with G-quadruplex-forming potential in Ras-transformed and highly metastatic breast cancer cells (MDA-MB-231) than in nontransformed and control MCF-7 cells. Moreover, the amount of transcript produced from G-quadruplex-forming templates decreased upon addition of siRNA targeting KCNH1 mRNA, which encodes a potassium voltage-gated channel subfamily H member 1 (K_(V)10.1). Importantly, G-quadruplex dissociation during tumor progression was observed by immunofluorescence using a G-quadruplex-binding antibody in cells. These results suggest that in normal cells, K~(+) ions attenuate the transcription of certain oncogenes by stabilizing G-quadruplex structures. Our findings provide insight into the novel mechanism of overexpression of certain G-rich genes during tumor progression.
机译:DNA G-四链体的形成对周围条件特别是K〜(+)浓度具有高度响应性。由于K〜(+)通道的过度表达,恶性癌细胞的K〜(+)浓度比正常细胞低得多。因此,G-四链体可能在癌细胞中不稳定。在这里,我们理化研究了体外和细胞内细胞内化学环境的变化如何在肿瘤进展过程中影响G-四链体的形成和转录。在体外,稳定的G-四链体形成抑制含有150 mM KCl的溶液中的转录(正常条件)。随着K〜(+)浓度的降低,降低了G-四链体的稳定性,具有G-四链体形成潜能的模板的转录产物增加。在正常细胞中,转录产物的生成趋势与体外实验相似,转录效率与G-四链体稳定性成反比。有趣的是,在Ras转化和高度转移性乳腺癌细胞(MDA-MB-231)中,具有G-四链体形成潜能的模板产生的转录物水平高于未转化和对照的MCF-7细胞。此外,由G-四链体形成模板产生的转录物的量在添加靶向KCNH1 mRNA的siRNA后减少,该siRNA编码钾电压门控通道亚家族H成员1(K_(V)10.1)。重要的是,通过使用细胞中的G-四链体结合抗体的免疫荧光观察到了肿瘤进展期间的G-四链体解离。这些结果表明,在正常细胞中,K〜(+)离子通过稳定G-四链体结构来减弱某些致癌基因的转录。我们的发现为肿瘤发展过程中某些富含G的基因过表达的新机制提供了见识。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2018年第2期|642-651|共10页
  • 作者单位

    Frontier Institute for Biomolecular Engineering Research (FIBER), Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), and Graduate School of FIRST, Konan University, 17-1-20 minatojima-minamimachi, Kobe 650-0047, Japan;

    Frontier Institute for Biomolecular Engineering Research (FIBER), Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), and Graduate School of FIRST, Konan University, 17-1-20 minatojima-minamimachi, Kobe 650-0047, Japan;

    Frontier Institute for Biomolecular Engineering Research (FIBER), Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), and Graduate School of FIRST, Konan University, 17-1-20 minatojima-minamimachi, Kobe 650-0047, Japan;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:16

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