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p53 Function Is Compromised by Inhibitor 2 of Phosphatase 2A in Sonic Hedgehog Medulloblastoma

机译:P53功能由Sonic Hedgehog Medulloblastoma的磷酸酶2a的抑制剂2损害

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Medulloblastomas, the most common malignant pediatric brain tumors, have been genetically defined into four subclasses, namely WNT-activated, Sonic Hedgehog (SHH)-activated, Group 3, and Group 4. Approximately 30% of medulloblastomas have aberrant SHH signaling and thus are referred to as SHH-activated medulloblastoma. The tumor suppressor gene TP53 has been recently recognized as a prognostic marker for patients with SHH-activated medulloblastoma; patients with mutant TP53 have a significantly worse outcome than those with wild-type TP53. It remains unknown whether p53 activity is impaired in SHH-activated, wild-type TP53 medulloblastoma, which is about 80% of the SHH-activated medulloblastomas. Utilizing the homozygous NeuroD2:SmoA1 mouse model with wild-type Trp53, which recapitulates human SHH-activated medulloblastoma, it was discovered that the endogenous Inhibitor 2 of Protein Phosphatase 2A (SET/I2PP2A) suppresses p53 function by promoting accumulation of phospho-MDM2 (S166), an active form of MDM2 that negatively regulates p53. Knockdown of I2PP2A in SmoA1 primary medulloblastoma cells reduced viability and proliferation in a p53-dependent manner, indicating the oncogenic role of I2PP2A. Importantly, this mechanism is conserved in the human medulloblastoma cell line ONS76 with wild-type TP53. Taken together, these findings indicate that p53 activity is inhibited by I2PP2A upstream of PP2A in SHH-activated and TP53-wild type medulloblastomas.
机译:Medulloblastomas是最常见的恶性小儿脑肿瘤,已经遗传地定义为四个亚类,即WNT活化,声音刺猬(SHH) - 第3组和组4.大约30%的Medulloblastomas具有异常的SHH信号,因此称为Shh活化的Medulloblastoma。肿瘤抑制基因TP53最近被认为是SHH活化髓细胞瘤患者的预后标志物;突变体TP53的患者具有比野生型TP53的结果更差。它仍然未知P53活性在SHH激活,野生型TP53 Medulloblastoma中是否损害,其约为Shh活化的Medulloblastomas的80%。利用具有野生型TRP53的纯合神经2:SMOA1小鼠模型,其促进了人的SHH活化的Medulloblastoma,发现蛋白质磷酸酶2a的内源抑制剂2(设定/ I2pp2a)通过促进磷酸盐-mdm2的积累来抑制p53功能( S166),一种负面调节P53的MDM2的活性形式。 SMOA1初级Medulloblastoma细胞I2PP2A的敲低以p53依赖性方式降低了活力和增殖,表明I2PP2A的致癌作用。重要的是,使用野生型TP53,在人髓质母细胞瘤细胞系ONS76中保守该机制。总之,这些发现表明,在SHH - 活化和TP53 - 野生型Medulloomas中,PP2A上游的I2PP2A抑制了P53活性。

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