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首页> 外文期刊>Oncogene >ADAR2-editing activity inhibits glioblastoma growth through the modulation of the CDC14B|[sol]|Skp2|[sol]|p21|[sol]|p27 axis
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ADAR2-editing activity inhibits glioblastoma growth through the modulation of the CDC14B|[sol]|Skp2|[sol]|p21|[sol]|p27 axis

机译:ADAR2编辑活性通过CDC14B | [sol] | Skp2 | [sol] | p21 | [sol] | p27轴的调节来抑制胶质母细胞瘤的生长

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摘要

Grade IV astrocytoma or glioblastoma multiforme (GBM) is one of the most aggressive and lethal tumors affecting humans. ADAR2-mediated A-to-I RNA editing, an essential post-transcriptional modification event in brain, is impaired in GBMs and astrocytoma cell lines. However, the role of ADAR2 editing in astrocytomas remains to be defined. Here, we show that ADAR2 editing rescue in astrocytomas prevents tumor growth in vivo and modulates an important cell cycle pathway involving the Skp2/p21/p27 proteins, often altered in glioblastoma. We demonstrate that ADAR2 deaminase activity is essential to inhibit tumor growth. Indeed, we identify the phosphatase CDC14B, which acts upstream of the Skp2/p21/p27 pathway, as a novel and critical ADAR2 target gene involved in glioblastoma growth. Specifically, ADAR2-mediated editing on CDC14B pre-mRNA increases its expression with a consequent reduction of the Skp2 target protein, as shown both in vitro and in vivo. We found that, compared to normal brain, both CDC14B editing and expression are progressively impaired in astrocytomas from grade I to IV, being very low in GBMs. These findings (1) demonstrate that post-transcriptional A-to-I RNA editing might be crucial for glioblastoma pathogenesis, (2) identify ADAR2-editing enzyme as a novel candidate tumor suppressor gene and (3) provide proof of principle that ADAR2 or its substrates may represent a suitable target(s) for possible novel, more effective and less toxic approaches to the treatment of GBMs.
机译:IV级星形细胞瘤或多形胶质母细胞瘤(GBM)是影响人类的最具侵害性和致命性的肿瘤之一。 ADAR2介导的Ato-I RNA编辑是大脑中必要的转录后修饰事件,在GBM和星形细胞瘤细胞系中受损。但是,ADAR2编辑在星形细胞瘤中的作用尚待确定。在这里,我们显示了在星形细胞瘤中编辑ADAR2可以阻止体内肿瘤的生长,并调节一个重要的细胞周期通路,该通路涉及Skp2 / p21 / p27蛋白,通常在胶质母细胞瘤中发生改变。我们证明,ADAR2脱氨酶活性对于抑制肿瘤生长至关重要。实际上,我们确定了磷酸酶CDC14B,它是Skp2 / p21 / p27途径的上游,是参与胶质母细胞瘤生长的新型和关键性ADAR2靶基因。具体而言,如体外和体内实验所示,ADAR2介导的CDC14B pre-mRNA编辑可增加其表达,从而减少Skp2靶蛋白。我们发现,与正常大脑相比,从I级到IV级的星形细胞瘤中CDC14B编辑和表达都逐渐受到损害,而GBM中的含量非常低。这些发现(1)证明转录后A-to-I RNA编辑可能对胶质母细胞瘤的发病机制至关重要;(2)将ADAR2编辑酶鉴定为一种新型的候选肿瘤抑制基因;(3)提供了ADAR2或其底物可能代表了一种合适的靶标,用于可能的新颖,更有效和毒性更低的GBM治疗方法。

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