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Osteoglycin promotes meningioma development through downregulation of NF2 and activation of mTOR signaling

机译:骨糖蛋白通过下调NF2和激活mTOR信号来促进脑膜瘤的发展

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Background Meningiomas are the most common primary intracranial tumors in adults. While a majority of meningiomas are slow growing neoplasms that may cured by surgical resection, a subset demonstrates more aggressive behavior and insidiously recurs despite surgery and radiation, without effective alternative treatment options. Elucidation of critical mitogenic pathways in meningioma oncogenesis may offer new therapeutic strategies. We performed an integrated genomic and molecular analysis to characterize the expression and function of osteoglycin (OGN) in meningiomas and explored possible therapeutic approaches for OGN-expressing meningiomas. Methods OGN mRNA expression in human meningiomas was assessed by RNA microarray and RNAscope. The impact of OGN on cell proliferation, colony formation, and mitogenic signaling cascades was assessed in a human meningioma cell line (IOMM-Lee) with stable overexpression of OGN. Furthermore, the functional consequences of introducing an AKT inhibitor in OGN-overexpressing meningioma cells were assessed. Results OGN mRNA expression was dramatically increased in meningiomas compared to a spectrum of other brain tumors and normal brain. OGN-overexpressing meningioma cells demonstrated an elevated rate of cell proliferation, cell cycle activation, and colony formation as compared with cells transfected with control vector. In addition, NF2 mRNA and protein expression were both attenuated in OGN-overexpressing cells. Conversely, mTOR pathway and AKT activation increased in OGN-overexpressing cells compared to control cells. Lastly, introduction of an AKT inhibitor reduced OGN expression in meningioma cells and resulted in increased cell death and autophagy, suggestive of a reciprocal relationship between OGN and AKT. Conclusion We identify OGN as a novel oncogene in meningioma proliferation. AKT inhibition reduces OGN protein levels in meningioma cells, with a concomitant increase in cell death, which provides a promising treatment option for meningiomas with OGN overexpression.
机译:背景脑膜瘤是成人中最常见的原发性颅内肿瘤。尽管大多数脑膜瘤是生长缓慢的肿瘤,可通过手术切除治愈,但有一部分表现出更具侵略性的行为,尽管进行了手术和放疗,但仍隐匿复发,而没有有效的替代治疗选择。阐明脑膜瘤肿瘤发生中的关键促有丝分裂途径可能提供新的治疗策略。我们进行了整合的基因组和分子分析,以表征脑膜瘤中骨糖蛋白(OGN)的表达和功能,并探讨了表达OGN的脑膜瘤的可能治疗方法。方法用RNA芯片和RNAscope检测人脑膜瘤中OGN mRNA的表达。在人脑膜瘤细胞系(IOMM-Lee)中,OGN稳定地过度表达,评估了OGN对细胞增殖,集落形成和有丝分裂信号级联反应的影响。此外,评估了在过表达OGN的脑膜瘤细胞中引入AKT抑制剂的功能后果。结果与其他脑肿瘤和正常脑的频谱相比,脑膜瘤中OGN mRNA表达显着增加。与用对照载体转染的细胞相比,过表达OGN的脑膜瘤细胞表现出较高的细胞增殖,细胞周期激活和集落形成速率。另外,在过表达OGN的细胞中NF2 mRNA和蛋白质表达均被减弱。相反,与对照细胞相比,在OGN过表达的细胞中mTOR途径和AKT激活增加。最后,引入AKT抑制剂会降低脑膜瘤细胞中OGN的表达,并导致细胞死亡和自噬增加,这表明OGN与AKT之间存在相互关系。结论我们确定OGN是脑膜瘤增生的新型致癌基因。 AKT抑制可降低脑膜瘤细胞中OGN蛋白的水平,并伴随细胞死亡的增加,这为OGN过表达的脑膜瘤提供了有希望的治疗选择。

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