4.7 Article

N(6)-methyladenosine-mediated miR-380-3p maturation and upregulation promotes cancer aggressiveness in pancreatic cancer

Journal

BIOENGINEERED
Volume 13, Issue 6, Pages 14460-14471

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/21655979.2022.2088497

Keywords

Pancreatic cancer; miR-380-3p; PTEN; PI3K; Akt pathway; cancer malignancy

Funding

  1. Youth Research Fund of the Second Hospital of Tianjin Medical University [2020ydey15]

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This study revealed the role of miR-380-3p in regulating pancreatic cancer progression through m6A modification and PTEN/Akt pathway. Overexpression of miR-380-3p promoted cell proliferation, epithelial-mesenchymal transition, and tumorigenesis, while knockdown of miR-380-3p had the opposite effects. Furthermore, miR-380-3p targeted PTEN to activate the downstream Akt signal pathway. This study provides important insights into the treatment and diagnosis of pancreatic cancer.
N(6)-methyladenosine (m6A)-modified microRNAs (miRNAs) are relevant to cancer progression. Also, although the involvement of miR-380-3p in regulating cancer progression in bladder cancer and neuroblastoma has been preliminarily explored, its role in other types of cancer, such as pancreatic cancer (PC), has not been studied. Thus, this study aimed to investigate the role of miR-380-3p in regulating PC progression. Here, through performing Real-Time qPCR, we evidenced that miR-380-3p was significantly upregulated in the clinical pancreatic cancer tissues and cells compared to their normal counterparts. Interestingly, miR-380-3p was enriched with m6A modifications, and elimination of m6A modifications by deleting METTL3 and METTL14 synergistically suppressed miR-380-3p expressions in PC cells. Next, the gain and loss-of-function experiments verified that knockdown of miR-380-3p suppressed cell proliferation, epithelial-mesenchymal transition (EMT), and tumorigenesis in PC cells in vitro and in vivo, whereas miR-380-3p overexpression had opposite effects. Furthermore, the underlying mechanisms were uncovered, and our data suggested that miR-380-3p targeted the 3' untranslated regions (3MODIFIER LETTER PRIMEUTRs) of PTEN for its inhibition and degradation, resulting in the activation of the downstream Akt signal pathway. Moreover, the rescuing experiments validated that both PTEN overexpression and Akt pathway inhibitor LY294002 abrogated the promoting effects of miR-380-3p overexpression on cancer aggressiveness in PC cells. Collectively, this study firstly investigated the role of the m6A-associated miR-380-3p/PTEN/Akt pathway in regulating PC progression, which provided novel therapeutic and diagnostic biomarkers for this cancer.

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