4.2 Article

Overexpressing microRNA-34a overcomes ABCG2-mediated drug resistance to 5-FU in side population cells from colon cancer via suppressing DLL1

Journal

JOURNAL OF BIOCHEMISTRY
Volume 167, Issue 6, Pages 557-564

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/jb/mvaa012

Keywords

colon cancer; drug resistance; miR-34a; Notch signalling pathway; side population cells

Funding

  1. National Natural Science Foundation of China [81860119]
  2. Key Research and Development Program of Jiangxi Provincial Department of Science and Technology [20071BBG70085]
  3. Natural Science Foundation of Jiangxi Province of China [20181BAB205011]
  4. Science and Technology Project Foundation of Education Department of Jiangxi Province, China [160162]
  5. Foundation of The Second Affiliated Hospital of Nanchang University [2016YNZJ12008]
  6. Science and Technology Planning Project of Health and Family Planning Commission of Jiangxi Province [20181062]
  7. Science and Technology Planning Project of Administration of Traditional Chinese Medicine of Health and Family Planning Commission of Jiangxi Province [2017A263]

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Colon cancer side population (SP) cells are a small subset of cancer cells that have cancer stemness capacity and enhanced drug resistance. ABCG2 is a multidrug resistance-related protein in SP cells and has been demonstrated to be regulated by Notch signalling pathway. Recently, microRNAs are reported to play a critical role in SP cell fate. However, their role in ABCG2-mediated drug resistance in colon cancer SP cells remains unclear. In the current study, the different expressions of miR-552, miR-611, miR-34a and miR-5000-3p were compared within SP and non-SP cells, which were separated from human colon cancer cell lines (SW480 and LoVo). We found that miR-34a was significantly down-regulated in SP cells and that overexpressing miR-34a overcame drug resistance to 5-fluorouracil (5-FU). The luciferase reporter assay indicated that miR-34a negatively regulated DLL1, a ligand of Notch signalling pathway, via binding with 3 '-untranslated region of its messenger RNA. In addition, overexpressing miR-34a overcame ABCG2-mediated resistance to 5-FU via DLL1/Notch pathway in vitro, and suppressed tumour growth under 5-FU treatment in vivo. In conclusion, our findings suggest that miR-34a acts as a tumour suppressor via enhancing chemosensitivity to 5-FU in SP cells, which provides a novel therapeutic target in chemotherapy-resistant colon cancer.

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