| Literature DB >> 25151861 |
Yan-chang Sun, Jing Wang, Cheng-cheng Guo, Ke Sai, Jian Wang, Fu-rong Chen, Qun-ying Yang, Yin-sheng Chen, Jie Wang, Tony Shing-shun To, Zong-ping Zhang, Yong-gao Mu, Zhong-ping Chen1.
Abstract
BACKGROUND: Although the incidence of glioma is relatively low, it is the most malignant tumor of the central nervous system. The prognosis of high-grade glioma patient is very poor due to the difficulties in complete resection and resistance to radio-/chemotherapy. Therefore, it is worth investigating the molecular mechanisms involved in glioma drug resistance. MicroRNAs have been found to play important roles in tumor progression and drug resistance. Our previous work showed that miR-181b is involved in the regulation of temozolomide resistance. In the current study, we investigated whether miR-181b also plays a role in antagonizing the effect of teniposide.Entities:
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Year: 2014 PMID: 25151861 PMCID: PMC4155117 DOI: 10.1186/1471-2407-14-611
Source DB: PubMed Journal: BMC Cancer ISSN: 1471-2407 Impact factor: 4.430
Figure 1MiR-181b expression is negatively related to glioma grade. A: The expression of miR-181b is low in high-grade (Grade II to Grade IV) while high in low-grade (Grade I) gliomas (**: p < 0.01). B: The survival rate of 90 glioma patients showed that high level of miR-181b is a good prognostic marker for longer survival (p < 0.05).
Figure 2MiR-181b level is positively related to glioma cell sensitivity to teniposide. A: Cells expressing low levels of miR-181b had high IC50, while cells with high miR-181b had low IC50 (r = -0.691, p < 0.01). B: MiR-181b was successfully overexpressed in U87 cells compared with vector control (*p < 0.01). C: The IC50 of miR-181b overexpressed U87 cells was significantly lower than control cells (1.3 ± 0.34 μg/ml versus 6.2 ± 0.87 μg/ml).
Figure 3MDM2 is a downstream target of miR-181b. A: The mRNA level of MDM2 in miR-181b overexpressed U87 cells was reduced. The protein levels of total MDM2 and phospho-MDM2 were all reduced in miR-181b overexpressed cells compared with vector control (p < 0.01). B. MiR-181b could bind to the 3’-UTR region of MDM2 (3491 to 3497), while the binding was interrupted with mutated MDM2. C: Dural luciferase reporter assay confirmed that miR-181b mimic binds to the 3’-UTR region of wild type MDM2 but not to the mutated form (p < 0.05).
Figure 4Downregulation of MDM2 promotes cell sensitivity to teniposide. A: The mRNA (p < 0.01) and phosphate protein level of MDM2 were all reduced after transient transfection of siRNAs in U87 cells. B: The IC50 of U87 cells to teniposide dropped from 5.86 ± 0.36 μg/ml to 2.90 ± 0.35 μg/ml upon the knockdown of MDM2.
Figure 5Upregulation of miR-181b enhances cell sensitivity to teniposide through mediation of MDM2. A: Successful overexpression of miR-181b and mutated MDM2 was confirmed by Western blot analysis. B: Transfection of mutated MDM2 competed the binding between miR-181b and wild type of MDM2, which reversed the teniposide sensitivity enhancement by miR-181b.