4.3 Article

Epigenetic silencing of miR-137 contributes to early colorectal carcinogenesis by impaired Aurora-A inhibition

Journal

Oncotarget
Volume 7, Issue 47, Pages 76852-76866

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.12719

Keywords

miR-137; Aurora-A; COX2; colorectal cancer; epigenetic regulation

Funding

  1. Ministry of Science and Technology (Taipei, Taiwan) [MOST 103-2320-B-006-037, 104-2320-B-006-020-MY3]
  2. National Cheng Kung University Hospital (Tainan, Taiwan) [NCKUH-10406009, NCKUH-10507002]
  3. Ministry of Health and Welfare (Taipei, Taiwan) [MOHW105-TDU-B-211-003]

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MicorRNA-137 is silenced in human colorectal cancer tissues and colon polyps. Our study showed that the decreased expression of miR-137 is significantly different in various types of polyp which maintain different potentials to lead to CRC development. The expression of miR-137 gradually decreases during the process of colorectal carcinogenesis. Receiver operating characteristic curve (ROC) analysis indicates that the loss of miR-137 expression in colon polyps can serve as a biomarker to predict the predisposition of colorectal carcinogenesis. By cell model and xenograft animal model, the enforced expression of miR-137 in colorectal cancer cells can inhibit cell proliferation and tumor formation, induce G2/M arrest, and lead to apoptosis. The expression pattern of miR-137 and Aurora-A or PTGS2 is negatively correlated in human colorectal cancer tissues and colon polyps. Those effects induced by overexpressed miR-137 can be rescued by the overexpression of Aurora-A. In summary, our study suggests that the loss of miR-137 expression in colon polyps can serve as a biomarker to predict the tendency toward to CRC formation through the impaired inhibitory effect of Aurora-A. The investigation of the regulatory mechanism of miR-137-mediated Aurora-A inhibition may shed new light on the early prognosis of cancer therapy for CRC in the future.

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