MicroRNA-200c increases radiosensitivity of human cancer cells with activated EGFR-associated signaling.

MicroRNA-200c increases radiosensitivity of human cancer cells with activated EGFR-associated signaling.
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DOI:
10.18632/oncotarget.18924
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发表时间:
2017-09-12
期刊:
影响因子:
--
通讯作者:
Kim IA
Kim IA
中科院分区:
其他
文献类型:
--
作者:
Koo T;Cho BJ;Kim DH;Park JM;Choi EJ;Kim HH;Lee DJ;Kim IA

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最近发现microRNA-200 c(miR-200 c)通过抑制几种癌症中的上皮-间质转化(EMT)而具有肿瘤抑制特性。miR-200 c还与多种细胞信号分子相互作用,调节许多重要的信号通路。在这项研究中,我们研究了miR-200 c在一组人癌细胞系中的放射增敏作用及其机制。恶性胶质瘤(U251,T98 G)、乳腺癌(MDA-MB-468)和肺癌(A549)细胞用对照前体微RNA、前体miR-200 c或抗miR-200 c转染。然后进行RT-PCR、克隆形成试验、免疫印迹和免疫细胞化学。为了预测miR-200 c的潜在靶点,使用microRNA数据库进行生物信息学分析。miR-200 c的异位过表达下调了p-EGFR和p-AKT,并增加了U251、T98 G、A549和MDA-MB-468细胞的放射敏感性。相反,miR-200 c抑制上调p-EGFR和p-AKT,并减少辐射诱导的细胞杀伤。miR-200 c导致持续的γ H2 AX灶形成并下调pDNA-PKC表达。自噬和凋亡是细胞死亡的主要方式。生物信息学分析预测miR-200 c可能与EGFR、AKT 2、MAPK 1、VEGFA和HIF 1AN相关。我们还证实了miR-200 c下调了U251和A549细胞中VEGF、HIF-1α和MMP 2的表达。在这些细胞中,过表达miR-200 c抑制了侵袭、迁移和血管形成。这些表型变化与E-cadherin和EphA 2下调和N-cadherin上调相关。miR-200 c对正常人成纤维细胞和星形胶质细胞没有观察到细胞毒性作用。总之,我们的数据表明,miR-200 c是一个有吸引力的目标,通过独特的调节控制癌症促生存信号和EMT的复杂调控网络,提高放射治疗的疗效。
MicroRNA-200c (miR-200c) recently was found to have tumor-suppressive properties by inhibiting the epithelial-mesenchymal transition (EMT) in several cancers. miR-200c also interacts with various cellular signaling molecules and regulates many important signaling pathways. In this study, we investigated the radiosensitizing effect of miR-200c and its mechanism in a panel of human cancer cell lines. Malignant glioma (U251, T98G), breast cancer (MDA-MB-468), and lung carcinoma (A549) cells were transfected with control pre-microRNA, pre-miR-200c, or anti-miR-200c. Then, RT-PCR, clonogenic assays, immunoblotting, and immunocytochemisty were performed. To predict the potential targets of miR-200c, microRNA databases were used for bioinformatics analysis. Ectopic overexpression of miR-200c downregulated p-EGFR and p-AKT and increased the radiosensitivity of U251, T98G, A549, and MDA-MB-468 cells. In contrast, miR-200c inhibition upregulated p-EGFR and p-AKT, and decreased radiation-induced cell killing. miR-200c led to persistent γH2AX focus formation and downregulated pDNA-PKc expression. Autophagy and apoptosis were major modes of cell death. Bioinformatics analysis predicted that miR-200c may be associated with EGFR, AKT2, MAPK1, VEGFA, and HIF1AN. We also confirmed that miR-200c downregulated the expression of VEGF, HIF-1α, and MMP2 in U251 and A549 cells. In these cells, overexpressing miR-200c inhibited invasion, migration, and vascular tube formation. These phenotypic changes were associated with E-cadherin and EphA2 downregulation and N-cadherin upregulation. miR-200c showed no observable cytotoxic effect on normal human fibroblasts and astrocytes. Taken together, our data suggest that miR-200c is an attractive target for improving the efficacy of radiotherapy via a unique modulation of the complex regulatory network controlling cancer pro-survival signaling and EMT.
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