4.4 Article

microRNA-377-3p downregulates the oncosuppressor T-cadherin in colorectal adenocarcinoma cells

Journal

CELL BIOLOGY INTERNATIONAL
Volume 45, Issue 8, Pages 1797-1803

Publisher

WILEY
DOI: 10.1002/cbin.11605

Keywords

cancer; RNA

Categories

Funding

  1. iCURE grant - Technology Platform per la Lotta alle Patologie Oncologiche from Regione Campania [CUP B21C 17000030007-SURF17061BP000000008]
  2. Valere projects from the University of Campania Luigi Vanvitelli

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The study highlights the oncosuppressive role of T-cadherin and the oncogenic activity of miR-377 in colorectal cancer. The regulatory circuit identified in this study provides new insights into molecular mechanisms driving colorectal carcinogenesis, potentially leading to the identification of novel biomarkers and therapeutic targets.
Colorectal cancer (CRC) is the second leading cause of death of malignant tumors worldwide. Recent studies point to a role for the adiponectin-receptor axis in colorectal carcinogenesis, and in particular to the oncosuppressive properties of the T-cadherin receptor. In addition, the loss of T-cadherin expression in tumor tissues has been linked to cancer progression and attributed to aberrant methylation of its promoter. Recognizing the pivotal role of microRNAs in CRC, this study explores their possible contribution to the downregulation of T-cadherin. A systematic bioinformatics analysis, restricted by microRNA expression data in the colon or in cultured colorectal cell lines, predicted twelve top-ranking target miRNA sites within the 3MODIFIER LETTER PRIME UTR of T-cadherin. Experimental validation analyses based on luciferase reporter constructs and miRNA mimic or miRNA inhibitor transfections toward colorectal adenocarcinoma cell lines indicated that miR-377-3p was able to directly bind to the T-cadherin sequence, and thus downregulating its expression. Given the oncogenic activity of miR-377 and the oncosuppressive activity of T-cadherin in CRC, the regulatory circuit highlighted in this study may add new insights into molecular mechanisms driving colorectal carcinogenesis, and perspectively it could be exploited to identify novel biomarkers and therapeutic targets.

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