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The RNA-binding protein HuR promotes glioma growth and treatment resistance.

机译:RNA结合蛋白HuR促进神经胶质瘤生长和治疗抵抗力。

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Posttranscriptional regulation is a critical control point for the expression of genes that promote or retard tumor growth. We previously found that the mRNA-binding protein, ELAV 1 (HuR), is upregulated in primary brain tumors and stabilizes growth factor mRNAs such as VEGF and IL-8. To better understand the role of HuR in brain tumor growth, we altered levels of HuR in glioma cells by short hairpin RNA or ectopic expression and measured tumor cell phenotype using in vitro and in vivo models. In HuR-silenced cells, we found a significant decrease in anchorage-independent growth and cell proliferation with a concomitant induction of apoptosis. Using an intracranial tumor model with primary glioblastoma cells, HuR silencing produced a significant decrease in tumor volume. In contrast, overexpression of HuR produced in vitro chemoresistance to standard glioma therapies. Because bcl-2 is abundantly expressed in glioma and associated with tumor growth and survival, we determined the impact of HuR on its regulation as a molecular validation to the cellular and animal studies. Using UV cross-linking and RNA immunoprecipitation, we show that HuR bound to the 3'-untranslated region of all bcl-2 family members. Silencing of HuR led to transcript destabilization and reduced protein expression. Polysome profiling indicated loss of HuR from the translational apparatus. In summary, these findings reveal a HuR-dependent mechanism for cancer cell survival and sensitivity to chemotherapeutic drugs suggesting that HuR should be considered as a new therapeutic target.
机译:转录后调控是促进或延缓肿瘤生长的基因表达的关键控制点。我们先前发现,mRNA结合蛋白ELAV 1(HuR)在原发性脑肿瘤中被上调并稳定了生长因子mRNA,例如VEGF和IL-8。为了更好地理解HuR在脑肿瘤生长中的作用,我们通过短发夹RNA或异位表达来改变神经胶质瘤细胞中HuR的水平,并使用体外和体内模型来测量肿瘤细胞的表型。在HuR沉默的细胞中,我们发现锚定非依赖性生长和细胞增殖显着减少,并伴随凋亡的诱导。使用具有原发性胶质母细胞瘤细胞的颅内肿瘤模型,HuR沉默可显着减少肿瘤体积。相反,HuR的过表达产生了对标准神经胶质瘤疗法的体外化学耐药性。由于bcl-2在神经胶质瘤中大量表达,并且与肿瘤的生长和存活有关,因此我们确定了HuR对其调控的影响,作为对细胞和动物研究的分子验证。使用紫外线交联和RNA免疫沉淀,我们显示HuR绑定到所有bcl-2家族成员的3'非翻译区。 HuR沉默导致转录不稳定和蛋白表达降低。多核糖体谱分析表明HuR从翻译设备中丢失。总之,这些发现揭示了癌细胞依赖于HuR的机制以及对化疗药物的敏感性,这表明应将HuR视为新的治疗靶点。

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