4.3 Article

MicroRNA-137 inhibits tumor growth and sensitizes chemosensitivity to paclitaxel and cisplatin in lung cancer

Journal

ONCOTARGET
Volume 7, Issue 15, Pages 20728-20742

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.8011

Keywords

miR-137; NUCKS1; paclitaxel; cisplatin; chemosensitivity

Funding

  1. National Natural Science Foundation of China [81202032, 81172140]
  2. Jiangsu 233 Province Clinical Science and Technology Projects (Clinical Research Center) [BL2012008]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions [JX10231801]
  4. National Institutes of Health [R01ES020868, R01CA193511]

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Chemotherapy resistance frequently drives tumour progression. However, the underlying molecular mechanisms are poorly characterized. In this study, we explored miR-137's role in the chemosensitivity of lung cancer. We found that the expression level of miR-137 is down-regulated in the human lung cancer tissues and the resistant cells strains: A549/paclitaxel(A549/PTX) and A549/cisplatin (A549/CDDP) when compared with lung cancer A549 cells. Moreover, we found that overeexpression of miR-137 inhibited cell proliferation, migration, cell survival and arrest the cell cycle in G1 phase in A549/PTX and A549/CDDP. Furthermore, Repression of miR-137 significantly promoted cell growth, migration, cell survival and cell cycle G1/S transition in A549 cells. We further demonstrated that the tumor suppressive role of miR-137 was mediated by negatively regulating Nuclear casein kinase and cyclindependent kinase substrate1(NUCKS1) protein expression. Importantly, miR-137 inhibits A549/PTX, A549/CDDP growth and angiogenesis in vivo. Our study is the first to identify the tumor suppressive role of over-expressed miR-137 in chemosensitivity. Identification of a novel miRNA-mediated pathway that regulates chemosensitivity in lung cancer will facilitate the development of novel therapeutic strategies in the future.

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