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WEE1 kinase inhibition enhances the radiation response of diffuse intrinsic pontine gliomas

机译:WEE1激酶抑制作用增强弥漫性桥脑神经胶质瘤的放射反应

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摘要

Diffuse intrinsic pontine glioma (DIPG) is a fatal pediatric disease. Thus far, no therapeutic agent has proven beneficial in the treatment of this malignancy. Therefore, conventional DNA-damaging radiotherapy remains the standard treatment, providing transient neurologic improvement without improving the probability of overall survival. During radiotherapy, WEE1 kinase controls the G(2) cell-cycle checkpoint, allowing for repair of irradiation (IR)-induced DNA damage. Here, we show that WEE1 kinase is one of the highest overexpressed kinases in primary DIPG tissues compared with matching non-neoplastic brain tissues. Inhibition of WEE1 by MK-1775 treatment of DIPG cells inhibited the IR-induced WEE1-mediated phosphorylation of CDC2, resulting in reduced G(2)-M arrest and decreased cell viability. Finally, we show that MK-1775 enhances the radiation response of E98-Fluc-mCherry DIPG mouse xenografts. Altogether, these results show that inhibition of WEE1 kinase in conjunction with radiotherapy holds potential as a therapeutic approach for the treatment of DIPG
机译:弥漫性桥脑神经胶质瘤(DIPG)是一种致命的儿科疾病。迄今为止,还没有治疗剂被证明对治疗这种恶性肿瘤有益。因此,常规的破坏DNA的放射疗法仍是标准疗法,可在不提高总体生存率的情况下提供短暂的神经功能改善。在放疗期间,WEE1激酶控制G(2)细胞周期检查点,允许修复辐射(IR)诱导的DNA损伤。在这里,我们显示,与匹配的非肿瘤性脑组织相比,WEE1激酶是主要DIPG组织中最高的过表达激酶之一。通过MK-1775处理DIPG细胞对WEE1的抑制作用抑制了IR诱导的WEE1介导的CDC2磷酸化,导致减少了G(2)-M阻滞并降低了细胞活力。最后,我们显示MK-1775增强了E98-Fluc-mCherry DIPG小鼠异种移植物的辐射反应。总而言之,这些结果表明,结合放射疗法抑制WEE1激酶具有作为治疗DIPG的潜力。

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