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miR-1297 通过抑制 KPNA2 负调控脑胶质瘤中的代谢重编程。

MiR-1297 negatively regulates metabolic reprogramming in glioblastoma via repressing KPNA2.

机构信息

The People's Hospital of Hanchuan City, No. 1 Renmin Road, Xiaogan, Hanchuan, Hubei, China.

出版信息

Hum Cell. 2020 Jul;33(3):619-629. doi: 10.1007/s13577-019-00316-7. Epub 2020 Mar 2.

Abstract

Cancer cell growth is characterized by reprogrammed glucose metabolism and subsequent high rate of glycolysis. The metabolic reprogramming is essential for cell proliferation and drug resistance of cancer cells including glioblastoma (GBM). MicroRNAs play pivotal roles during GBM development. In the present study, we discovered a significant downregulation of miR-1297 in GBM. Decreased miR-1297 expression was associated with prolonged overall survival of patients with glioma. Overexpression of miR-1297 promoted cell proliferation and glycolysis in GBM cells. Bioinformatic analysis (TargetScan and miRanda) indicated that miR-1297 might target 3'UTR of KPNA2, a key regulator of glycolysis in GBM. The regulation was confirmed in a dual-luciferase reporter assay in GBM cells. Furthermore, overexpression of KPNA2 could reverse miR-1297 mimic induced cell growth arrest and inhibition of glycolysis in GBM cells. Finally, a negative correlation between miR-1297 and KPNA2 mRNA levels was observed in GBM tissues. Collectively, the data demonstrated that the abnormal metabolic reprogramming was driven by miR-1297 in GBM and suggested miR-1297 as a tumor suppressor.

摘要

癌细胞的生长特点是葡萄糖代谢重新编程,随后糖酵解率升高。代谢重编程对于包括神经胶质瘤(GBM)在内的癌细胞的增殖和耐药性至关重要。microRNAs 在 GBM 的发展过程中起着关键作用。在本研究中,我们发现 miR-1297 在 GBM 中显著下调。miR-1297 表达降低与胶质瘤患者的总生存期延长相关。miR-1297 的过表达促进了 GBM 细胞的增殖和糖酵解。生物信息学分析(TargetScan 和 miRanda)表明,miR-1297 可能靶向 KPNA2 的 3'UTR,KPNA2 是 GBM 中糖酵解的关键调节因子。在 GBM 细胞中的双荧光素酶报告基因检测中证实了这种调控。此外,过表达 KPNA2 可以逆转 miR-1297 模拟物诱导的 GBM 细胞生长停滞和糖酵解抑制。最后,在 GBM 组织中观察到 miR-1297 和 KPNA2 mRNA 水平之间存在负相关。总之,这些数据表明异常的代谢重编程是由 miR-1297 在 GBM 中驱动的,并提示 miR-1297 作为一种肿瘤抑制因子。

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