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Che-1/AATF binds to RNA polymerase I machinery and sustains ribosomal RNA gene transcription

机译:Che-1 / AATF与RNA聚合酶I机械结合,维持核糖体RNA基因转录

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摘要

Originally identified as an RNA polymerase II interactor, Che-1/AATF (Che-1) has now been recognized as a multifunctional protein involved in cell-cycle regulation and cancer progression, as well as apoptosis inhibition and response to stress. This protein displays a peculiar nucleolar localization and it has recently been implicated in pre-rRNA processing and ribosome biogenesis. Here, we report the identification of a novel function of Che-1 in the regulation of ribosomal RNA (rRNA) synthesis, in both cancer and normal cells. We demonstrate that Che-1 interacts with RNA polymerase I and nucleolar upstream binding factor (UBF) and promotes RNA polymerase I-dependent transcription. Furthermore, this protein binds to the rRNA gene (rDNA) promoter and modulates its epigenetic state by contrasting the recruitment of HDAC1. Che-1 downregulation affects RNA polymerase I and UBF recruitment on rDNA and leads to reducing rDNA promoter activity and 47S pre-rRNA production. Interestingly, Che-1 depletion induces abnormal nucleolar morphology associated with re-distribution of nucleolar proteins. Finally, we show that upon DNA damage Che-1 re-localizes from rDNA to TP53 gene promoter to induce cell-cycle arrest. This previously uncharacterized function of Che-1 confirms the important role of this protein in the regulation of ribosome biogenesis, cellular proliferation and response to stress.
机译:最初被识别为RNA聚合酶II交流器,CHE-1 / AATF(CHE-1)现已被认为是参与细胞周期调节和癌症进展的多官能蛋白,以及凋亡抑制和对压力的反应。该蛋白质显示出一种特殊的核仁定位,最近涉及预rRNA加工和核糖体生物发生。在这里,我们在癌症和正常细胞中报告了在核糖体RNA(RRNA)合成调节中Che-1的新功能。我们证明Che-1与RNA聚合酶I和核仁上游结合因子(UBF)相互作用,并促进RNA聚合酶I依赖性转录。此外,该蛋白质与RRNA基因(RDNA)启动子结合,并通过对比HDAC1的募集来调节其表观遗传状态。 Che-1下调会影响RNA聚合酶I和UBF募集在RDNA上,并导致降低RDNA启动子活性和47S预rRNA生产。有趣的是,Che-1耗竭诱导与核仁蛋白的重新分布相关的异常核仁形态。最后,我们表明,在DNA损伤时CHE-1从RDNA重新定位到TP53基因启动子,以诱导细胞周期停滞。这种先前没有Che-1功能的功能表明该蛋白在核糖体生物发生,细胞增殖和对应激的反应的调节中的重要作用。

著录项

  • 来源
    《Nucleic Acids Research》 |2020年第11期|共16页
  • 作者单位

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

    IRCCS Regina Elena Oncogen &

    Epigenet Unit Dept Res Adv Diagnost &

    Technol Innovat Translat Res Area Natl Canc Inst I-00144 Rome Italy;

    Univ Cologne Fac Med Dept Internal Med 2 D-50937 Cologne Germany;

    Univ Coimbra Ctr Neurosci &

    Cell Biol CNC P-3060197 Coimbra Portugal;

    Sapienza Univ Rome Dept Expt Med I-00161 Rome Italy;

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

    IRCCS Regina Elena Natl Canc Inst SAFU Lab Dept Res Adv Diagnost &

    Technol Innovat Translat I-00144 Rome Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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