miR-338-5p inhibits cell proliferation, colony formation, migration and cisplatin resistance in esophageal squamous cancer cells by targeting FERMT2

Author:

Lin Wen-Chun12,Chen Li-Han3,Hsieh Yao-Chin4,Yang Pei-Wen5,Lai Liang-Chuan67,Chuang Eric Y12378,Lee Jang-Ming5,Tsai Mong-Hsun12479

Affiliation:

1. Genome and Systems Biology Degree Program, National Taiwan University, Taipei, Taiwan

2. Genome and Systems Biology Degree Program, Academia Sinica, Taipei, Taiwan

3. Graduate Institute of Biomedical Electronics and Bioinformatics, National Taiwan University, Taipei, Taiwan

4. Institute of Biotechnology, National Taiwan University, Taipei, Taiwan

5. Department of Surgery, National Taiwan University Hospital and National Taiwan University College of Medicine

6. Graduate Institute of Physiology, National Taiwan University, Taipei, Taiwan

7. Bioinformatics and Biostatistics Core, NTU Center of Genomic and Precision Medicine, National Taiwan University, Taipei, Taiwan

8. Biomedical Technology and Device Research Laboratories, Industrial Technology Research Institute, Hsinchu, Taiwan

9. Center for Biotechnology, National Taiwan University, Taipei, Taiwan

Abstract

AbstractEsophageal cancer is one of the leading causes of cancer death in the male population of Eastern Asia. In addition, esophageal squamous cell carcinoma (ESCC) is the major type of esophageal cancer among the world. Owing to the poor overall 5-year survival rate, novel effective treatment strategies are needed. MicroRNAs are important gene regulators that are dysregulated in many cancer types. In our previous study, we applied next-generation sequencing to demonstrate that miR-338-5p was downregulated in the tumor tissue of patients with versus without recurrence. In this study, we further studied the roles of miR-338-5p in ESCC. The expression of endogenous miR-338-5p was at lower levels in ESCC cells compared with normal cells. Functional assays showed that miR-338-5p reduced cell proliferation, colony formation, migration and cisplatin resistance in an ESCC cell line, CE-81T. Potential target genes of miR-338-5p were identified by microarray and prediction tools, and 31 genes were selected. Among these, Fermitin family homolog 2 (FERMT2) plays an oncogenic role in ESCC, so it was chosen for further study. Luciferase assays showed the direct binding between miR-338-5p and the 3′ untranslated region of FERMT2. Silencing of FERMT2 inhibited cell proliferation, colony formation, migration and cisplatin resistance. Pathway analysis revealed that the integrin-linked protein kinase signaling pathway, in which FERMT2 participates, was significantly affected by a miR-338-5p mimic. Our results suggest that miR-338-5p may play an antioncogenic role in ESCC via repressing FERMT2.

Funder

Ministry of Science and Technology, Taiwan

National Health Research Institutes

National Taiwan University

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,General Medicine

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