Liu S-L, Sui Y-F, Lin M-Z
Clinical Laboratory, the People's Hospital of Changle, Weifang, Shandong, China.
Eur Rev Med Pharmacol Sci. 2016 Jul;20(15):3223-9.
In this study, we firstly verified how miR-375 is downregulated in breast cancer cells with multi-drug resistance (MDR) and further investigated the regulative effect of miR-375 on Ybx1 expression.
MiR-375 expression and promoter methylation status were studied by retrieving data in NCBI GEO Datasets, qRT-PCR and Methylation-Specific PCR (MSP) assay. Drug sensitivity of the cancer cells was assessed using MTT assay. The binding between miR-375 and YBX1 gene was predicted using Targetscan 7.1 and verified using western blot and dual luciferase assay.
MiR-375 is significantly downregulated in both MCF-7/ADM and MCF-7/PTX cells than in MCF-7 cells. MCF-7/ADM and MCF-7/PTX cells had significantly higher level of promoter methylation than MCF-7 cells. 5-AZA-dC treatment significantly reduced the methylation in MCF-7/ADM and MCF-7/PTX cells and increased miR-375 expression. MiR-375 can directly target 3'UTR of YBX1 and thereby decrease its expression in MCF-7/ADM and MCF-7/PTX cells. Both miR-375 overexpression and YBX1 knockdown significantly decreased P-gp expression and increased chemosensitivity of the cancer cells.
MiR-375 is downregulated in MCF-7/ADM and MCF-7/PTX cells, and its downregulation is a result of promoter methylation. MiR-375 can directly target 3'UTR of YBX1 and thereby decrease its expression, which might be an important mechanism of MDR in breast cancer cells.
在本研究中,我们首先验证了miR-375在多药耐药(MDR)乳腺癌细胞中是如何下调的,并进一步研究了miR-375对Ybx1表达的调节作用。
通过检索NCBI GEO数据集、qRT-PCR和甲基化特异性PCR(MSP)分析来研究miR-375的表达和启动子甲基化状态。使用MTT分析评估癌细胞的药物敏感性。使用Targetscan 7.1预测miR-375与YBX1基因之间的结合,并通过蛋白质免疫印迹和双荧光素酶分析进行验证。
与MCF-7细胞相比,MCF-7/ADM和MCF-7/PTX细胞中的miR-375均显著下调。MCF-7/ADM和MCF-7/PTX细胞的启动子甲基化水平显著高于MCF-7细胞。5-氮杂-2'-脱氧胞苷(5-AZA-dC)处理显著降低了MCF-7/ADM和MCF-7/PTX细胞中的甲基化水平,并增加了miR-375的表达。miR-375可以直接靶向YBX1的3'UTR,从而降低其在MCF-7/ADM和MCF-7/PTX细胞中的表达。miR-375过表达和YBX1基因敲低均显著降低P-糖蛋白的表达,并增加癌细胞的化学敏感性。
miR-375在MCF-7/ADM和MCF-7/PTX细胞中下调,其下调是启动子甲基化的结果。miR-375可以直接靶向YBX1的3'UTR,从而降低其表达,这可能是乳腺癌细胞中MDR的重要机制。