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An internal ribosome entry site in the 5′ untranslated region of epidermal growth factor receptor allows hypoxic expression

机译:表皮生长因子受体5'非翻译区的内部核糖体进入位点允许低氧表达

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The expression of epidermal growth factor receptor (EGFR/ERBB1/HER1) is implicated in the progress of numerous cancers, a feature that has been exploited in the development of EGFR antibodies and EGFR tyrosine kinase inhibitors as anti-cancer drugs. However, EGFR also has important normal cellular functions, leading to serious side effects when EGFR is inhibited. One damaging characteristic of many oncogenes is the ability to be expressed in the hypoxic conditions associated with the tumour interior. It has previously been demonstrated that expression of EGFR is maintained in hypoxic conditions via an unknown mechanism of translational control, despite global translation rates generally being attenuated under hypoxic conditions. In this report, we demonstrate that the human EGFR 5′ untranslated region (UTR) sequence can initiate the expression of a downstream open reading frame via an internal ribosome entry site (IRES). We show that this effect is not due to either cryptic promoter activity or splicing events. We have investigated the requirement of the EGFR IRES for eukaryotic initiation factor 4A (eIF4A), which is an RNA helicase responsible for processing RNA secondary structure as part of translation initiation. Treatment with hippuristanol (a potent inhibitor of eIF4A) caused a decrease in EGFR 5′ UTR-driven reporter activity and also a reduction in EGFR protein level. Importantly, we show that expression of a reporter gene under the control of the EGFR IRES is maintained under hypoxic conditions despite a fall in global translation rates.
机译:表皮生长因子受体(EGFR / ERBB1 / HER1)的表达与许多癌症的进展有关,这一特征已在开发EGFR抗体和EGFR酪氨酸激酶抑制剂作为抗癌药物中得到了利用。但是,EGFR也具有重要的正常细胞功能,当EGFR被抑制时会导致严重的副作用。许多致癌基因的破坏特征之一是在与肿瘤内部有关的低氧条件下表达的能力。先前已经证明,尽管总体翻译率通常在低氧条件下减弱,但通过未知的翻译控制机制在低氧条件下仍维持EGFR的表达。在本报告中,我们证明了人类EGFR 5'非翻译区(UTR)序列可以通过内部核糖体进入位点(IRES)启动下游开放阅读框的表达。我们表明,这种作用不是由于启动子活性不佳或剪接事件引起的。我们已经研究了真核生物起始因子4A(eIF4A)对EGFR I​​RES的需求,这是一种RNA解旋酶,负责将RNA二级结构作为翻译起始的一部分进行处理。用马尿嘌呤醇(一种有效的eIF4A抑制剂)进行治疗可导致EGFR 5'UTR驱动的报道分子活性降低,也导致EGFR蛋白水平降低。重要的是,我们显示,尽管全球翻译率下降,但在缺氧条件下仍能在EGFR I​​RES的控制下维持报告基因的表达。

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