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PDZ-Binding kinase-Dependent Transcriptional Regulation of CCNB2 Promotes Tumorigenesis and Radio-Resistance in Glioblastoma

机译:CCNB2的PDZ结合激酶依赖性转录调节促进胶质母细胞瘤中的肿瘤引发和抗抗抗抗抗抗性

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摘要

Increasing evidence has indicated that PDZ binding kinase (PBK) promotes proliferation, invasion, and therapeutic resistance in a variety of cancer types. However, the physiological function and therapy-resistant role of PBK in GBM remain underexplored. In this study, PBK was identified as one of the most therapy-resistant genes with significantly elevated expression level in GBM. Moreover, the high expression level of PBK was essential for GBM tumorigenesis and radio-resistance both in vitro and in vivo. Clinically, aberrant activation of PBK was correlated with poor clinical prognosis. In addition, inhibition of PBK dramatically enhanced the efficacy of radiation therapy in GBM cells. Mechanically, PBK-dependent transcriptional regulation of CCNB2 was critical for tumorigenesis and radio-resistance in GBM cells. Collectively, PBK promotes tumorigenesis and radio-resistance in GBM and may serve as a novel therapeutic target for GBM treatment.
机译:越来越多的证据表明PDZ结合激酶(PBK)促进了各种癌症类型中的增殖,侵袭和治疗性。 然而,PBK在GBM中的生理功能和治疗耐药作用仍未实现了望远镜。 在本研究中,PBK被鉴定为最大治疗抗性基因之一,在GBM中表达水平显着升高。 此外,PBK的高表达水平对于在体外和体内的GBM肿瘤引发和无线电抗性至关重要。 临床上,PBK的异常激活与临床预后不良。 此外,PBK的抑制显着增强了辐射治疗在GBM细胞中的疗效。 机械地,CCNB2的PBK依赖性转录调节对于GBM细胞中的肿瘤引发和抗抗抗抗抗抗抗体调节至关重要。 总的来说,PBK促进GBM中的肿瘤发生和抗射电阻,可用作GBM治疗的新疗法靶标。

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