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The QKI-5 and QKI-6 RNA Binding Proteins Regulate the Expression of MicroRNA 7 in Glial Cells

机译:QKI-5和QKI-6 RNA结合蛋白调节MicroRNA 7在胶质细胞中的表达

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The quaking (qkI) gene encodes 3 major alternatively spliced isoforms that contain unique sequences at their C termini dictating their cellular localization. QKI-5 is predominantly nuclear, whereas QKI-6 is distributed throughout the cell and QKI-7 is cytoplasmic. The QKI isoforms are sequence-specific RNA binding proteins expressed mainly in glial cells modulating RNA splicing, export, and stability. Herein, we identify a new role for the QKI proteins in the regulation of microRNA (miRNA) processing. We observed that small interfering RNA (siRNA)-mediated QKI depletion of U343 glioblastoma cells leads to a robust increase in miR-7 expression. The processing from primary to mature miR-7 was inhibited in the presence QKI-5 and QKI-6 but not QKI-7, suggesting that the nuclear localization plays an important role in the regulation of miR-7 expression. The primary miR-7-1 was bound by the QKI isoforms in a QKI response element (QRE)-specific manner. We observed that the pri-miR-7-1 RNA was tightly bound to Drosha in the presence of the QKI isoforms, and this association was not observed in siRNA-mediated QKI or Drosha-depleted U343 glioblastoma cells. Moreover, the presence of the QKI isoforms led to an increase presence of pri-miR-7 in nuclear foci, suggesting that pri-miR-7-1 is retained in the nucleus by the QKI isoforms. miR-7 is known to target the epidermal growth factor (EGF) receptor (EGFR) 3′ untranslated region (3′-UTR), and indeed, QKI-deficient U343 cells had reduced EGFR expression and decreased ERK activation in response to EGF. Elevated levels of miR-7 are associated with cell cycle arrest, and it was observed that QKI-deficient U343 that harbor elevated levels of miR-7 exhibited defects in cell proliferation that were partially rescued by the addition of a miR-7 inhibitor. These findings suggest that the QKI isoforms regulate glial cell function and proliferation by regulating the processing of certain miRNAs.
机译: quaking qkI )基因编码3个主要的可变剪接同工型,在其C端含有独特序列,指示其细胞定位。 QKI-5主要是核的,而QKI-6遍布整个细胞,而QKI-7是细胞质的。 QKI亚型是序列特异性的RNA结合蛋白,主要在胶质细胞中表达,可调节RNA剪接,输出和稳定性。在本文中,我们确定了QKI蛋白在microRNA(miRNA)加工调控中的新作用。我们观察到,U343胶质母细胞瘤细胞的小干扰RNA(siRNA)介导的QKI耗竭导致miR-7表达的强劲增加。在存在QKI-5和QKI-6的情况下,抑制了从原代miR-7到成熟miR-7的加工,但没有抑制QKI-7,这表明核定位在miR-7表达的调节中起着重要作用。主要的miR-7-1被QKI异构体以QKI响应元件(QRE)特定的方式结合。我们观察到pri-miR-7-1 RNA在QKI亚型存在下与Drosha紧密结合,在siRNA介导的QKI或Drosha贫化的U343胶质母细胞瘤细胞中未观察到这种关联。此外,QKI同工型的存在导致核灶中pri-miR-7的存在增加,这表明pri-miR-7-1被QKI同工型保留在细胞核中。已知miR-7靶向表皮生长因子(EGF)受体(EGFR)3'非翻译区(3'-UTR),实际上,QKI缺失的U343细胞响应EGF减少了EGFR表达并降低了ERK激活。 miR-7水平升高与细胞周期停滞有关,并且观察到带有miR-7水平升高的QKI缺陷型U343表现出细胞增殖缺陷,可通过添加miR-7抑制剂部分挽救。这些发现表明,QKI同工型通过调节某些miRNA的加工来调节神经胶质细胞的功能和增殖。

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