Department of Obstetrics and Gynecology, Shanghai General Hospital of Nanjing Medical University, Shanghai 200080, P.R. China.
Mol Med Rep. 2019 May;19(5):3376-3392. doi: 10.3892/mmr.2019.10008. Epub 2019 Mar 5.
MicroRNAs (miRNAs) serve important roles in drug‑resistance; however, exosomal miRNAs associated with drug‑resistance in ovarian cancer (OC) have not been reported to date. The current study aimed to analyze the drug resistance‑associated exosomal miRNAs in original OC cells and their derived exosomes using microarray data downloaded from the Gene Expression Omnibus database (series GSE76449). The chemosensitive OC cell lines SKOV3_ip1, A2780_PAR and HEYA8, as well as the chemoresistant cell lines SKOV3_TR, A2780_CP20 and HEYA8_MDR, were investigated. Differentially expressed miRNAs (DE‑miRNAs) were identified using the limma method, and their mRNA targets were predicted using the miRWalk and LinkedOmics database. Functions of target genes were analyzed with DAVID tool, while TCGA data were used to explore the survival association of identified miRNAs. According to the results, 28 DE‑miRNAs were found to be common in exosomal and original samples of A2780_CP20 cells, among which the functions of 5 miRNAs were predicted (including miR‑146b‑5p, miR‑509‑5p, miR‑574‑3p, miR‑574‑5p and miR‑760). In addition, 16 and 35 DE‑miRNAs were detected for HEYA8_MDR and SKOV3_TR, respectively, with the functions of 4 of these miRNAs predicted for each cell line (HEYA8_MDR: miR‑30a‑3p, miR‑30a‑5p, miR‑612 and miR‑617; SKOV3_TR: miR‑193a‑5p, miR‑423‑3p, miR‑769‑5p and miR‑922). It was also reported that miR‑183‑5p was the only one common miRNA among the three cell lines. Furthermore, miR‑574‑3p, miR‑30a‑5p and miR‑922 may regulate CUL2 to mediate HIF‑1 cancer signaling pathway, while miR‑183‑5p may modulate MECP2, similar to miR‑760, miR‑30a‑5p and miR‑922, to influence cell proliferation. Finally, the downregulated miR‑612 may promote the expression of TEAD3 via the Hippo signaling pathway, and this miRNA was associated with poor prognosis. In conclusion, the findings of the present study suggested several underlying miRNA targets for improving the chemotherapy sensitivity of OC.
微小 RNA(miRNA)在耐药性中发挥重要作用;然而,目前尚未报道与卵巢癌(OC)耐药相关的外泌体 miRNA。本研究旨在使用从基因表达综合数据库(系列 GSE76449)下载的微阵列数据分析原始 OC 细胞及其衍生的外泌体中的耐药相关外泌体 miRNA。研究了化疗敏感的 OC 细胞系 SKOV3_ip1、A2780_PAR 和 HEYA8 以及化疗耐药细胞系 SKOV3_TR、A2780_CP20 和 HEYA8_MDR。使用 limma 方法鉴定差异表达 miRNA(DE-miRNA),并使用 miRWalk 和 LinkedOmics 数据库预测其 mRNA 靶标。使用 DAVID 工具分析靶基因的功能,同时使用 TCGA 数据探讨鉴定 miRNA 的生存相关性。根据结果,在 A2780_CP20 细胞的外泌体和原始样本中发现了 28 个共同的 DE-miRNA,其中 5 个 miRNA 的功能被预测(包括 miR-146b-5p、miR-509-5p、miR-574-3p、miR-574-5p 和 miR-760)。此外,在 HEYA8_MDR 和 SKOV3_TR 中分别检测到 16 个和 35 个 DE-miRNA,每个细胞系预测到其中 4 个 miRNA 的功能(HEYA8_MDR:miR-30a-3p、miR-30a-5p、miR-612 和 miR-617;SKOV3_TR:miR-193a-5p、miR-423-3p、miR-769-5p 和 miR-922)。还报道了 miR-183-5p 是三种细胞系中唯一的共同 miRNA。此外,miR-574-3p、miR-30a-5p 和 miR-922 可能通过调节 CUL2 来调节 HIF-1 癌症信号通路,而 miR-183-5p 可能通过调节 MECP2 来影响细胞增殖,类似于 miR-760、miR-30a-5p 和 miR-922。最后,下调的 miR-612 可能通过 Hippo 信号通路促进 TEAD3 的表达,并且该 miRNA与预后不良相关。总之,本研究的结果提出了几种潜在的 miRNA 靶标,以提高 OC 的化疗敏感性。