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M i R ‐876‐3p regulates cisplatin resistance and stem cell‐like properties of gastric cancer cells by targeting TMED 3
Author(s) -
Peng Chunwei,
Huang Kai,
Liu Guangjie,
Li Yunsong,
Yu Changjun
Publication year - 2019
Publication title -
journal of gastroenterology and hepatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.214
H-Index - 130
eISSN - 1440-1746
pISSN - 0815-9319
DOI - 10.1111/jgh.14649
Subject(s) - cd44 , cisplatin , viability assay , cancer stem cell , microrna , stem cell , microbiology and biotechnology , cell growth , cell , cancer research , stem cell marker , cell culture , biology , medicine , biochemistry , gene , genetics , chemotherapy
Background and Aim Gastric cancer (GC), a prevalent tumor, exerts a major economic burden, and we aimed to explore miR‐876‐3p's effects on GC and related mechanisms. Methods Cell viability was analyzed via CCK‐8 and colony formation assay. Stem cell‐like properties were examined via spheroid colony formation assay. mRNA abundance of key genes was analyzed via quantitative polymerase chain reaction. Protein level of TMED3 and stem cell markers was examined by western blot. TargetScan, luciferase, and biotin‐miRNA pulldown assay were used to identify miR‐876‐3p's target. Results MiR‐876‐3p was downregulated in GC, and its mRNA level had negative relationship with cisplatin resistance of GC. Moreover, decreased miR‐876‐3p expression level suggested poor prognosis of GC patients. MiR‐876‐3p inhibited drug resistance of cisplatin‐resistant cell line SGC‐7901/DDP and MKN‐45/DDP, as shown by decreased cell viability, IC 50 , and colony formation ability. MiR‐876‐3p inhibited stem cell‐like features and downregulated the expressions of Sox‐2, Oct‐4, CD133, and CD44 in GC cells. Luciferase and biotin‐miRNA pulldown assay confirmed that TMED3 was miR‐876‐3p's direct target. TMED3 siRNA inhibited miR‐876‐3p's effects on cisplatin resistance and stem cell‐like features of SGC‐7901/DDP cells. Conclusion MiR‐876‐3p enhanced cisplatin sensitivity and restricted stem cell‐like features of GC through targeting TMED3.