Lncrna malat1 regulates the progression and cisplatin resistance of ovarian cancer cells via modulating mir-1271-5p/e2f5 axis

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Abstract

Background: Long non-coding RNAs (lncRNAs) and microRNAs (miRNAs) were reported to be related to the development of ovarian cancer (OC). In this study, the functional mechanisms of lncRNA metastasis associated with lung adenocarcinoma transcript 1 (MALAT1) and microRNA-1271-5p (miR-1271-5p) were explored in OC. Methods: The level of MALAT1, miR-1271-5p, or E2F transcription factor 5 (E2F5) was detected by qRT-PCR. MTT assay, flow cytometry analysis and transwell migration and invasion assays were performed to determine cell proliferation, apoptosis, migration and invasion, respectively. E2F5 protein expression was detected by Western blot. The interac-tion between miR-1271-5p and MALAT1 or E2F transcription factor 5 (E2F5) was con-firmed by the dual-luciferase reporter assay. Results: MALAT1 and E2F5 level were increased, while miR-1271-5p level was decreased in cisplatin (DDP)-resistant OC tissues and cells. MALAT1 knockdown or miR-1271-5p upregulation decreased IC50 of cisplatin, and inhibited cell proliferation, migration, invasion, and facilitated cell apoptosis in DDP-resistant OC cells. Moreover, MALAT1 sponged miR-1271-5p to upregulate E2F5 expression. Besides, MALAT1 knockdown decreased DDP resistance, inhibited cell proliferation, migration, invasion, and promoted cell apoptosis by sponging miR-1271-5p to downregulate E2F5 expression in DDP-resistant OC cell. Conclusion: We demonstrated that MALAT1 mediated DDP-resistant OC development through miR-1271-5p/E2F5 axis, providing the theoretical basis for OC therapy.

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Wang, Y., Wang, X., Han, L., & Hu, D. (2020). Lncrna malat1 regulates the progression and cisplatin resistance of ovarian cancer cells via modulating mir-1271-5p/e2f5 axis. Cancer Management and Research, 12, 9999–10010. https://doi.org/10.2147/CMAR.S261979

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