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MicroRNA-363-3p/p21(Cip1/Waf1) axis is regulated by HIF-2α in mediating stemness of melanoma cells
Abstract:
Melanoma is a malignant tumor. The acquisition of stemness of melanoma cells aggravates the malignant transformation, which can be regulated by microRNAs (miRNAs, miR). MiR-363-3p is a key tumor-related miRNA, but its role in stemness and melanoma cells is still unknown. Presently, miR-363-3p, induced by hypoxia inducible factor (HIF)-2α, played a positive role in the stemness of melanoma cells. The levels of miR-363-3p and HIF-2α were upregulated in melanoma cell lines. Overexpression of HIF-2α significantly increased the levels of miR-363-3p. However, both HIF-2α knockdown and miR-363-3p inhibition inhibited the levels of the stemness markers (CD133, CD271, Jarid1B, and Nanog). Furthermore, the levels of miR-363-3p and HIF-2α were upregulated in fluorescence activated cell sorting (FACS)-sorted CD271high/+ cells. Whereas miR-363-3p depletion reduced the proportion and the spheroidization of the CD271high/+ cells, decreased the levels of CD133, CD271, Jarid1B and Nanog with restrained proliferative activity of CD271high/+ cells. Additionally, miR-363-3p was confirmed a key downstream of HIF-2α. Intriguingly, cyclin-dependent kinase inhibitor 1A [CDKN1A, p21(Cip1/Waf1)], a key inhibitor of S-phase DNA synthesis and cell cycle progression, was confirmed a target gene of miR-363-3p by luciferase reporter gene assay. The protein levels of CD133, CD271, Jarid1B and Nanog were upregulated with enhanced proliferative activity of CD271high/+ cells by inhibition of p21 in melanoma cells. In conclusion, miR-363-3p is induced by HIF-2α to promote the stemness of melanoma cells via inhibiting p21. The present study provides novel insights that HIF-2α/miR-363-3p/p21 signaling may be a potential target of research and therapy of melanoma.
Insights
Hypoxia-inducible factor-2α (HIF-2α) induces microRNA-363-3p (miR-363-3p) to promote melanoma cell stemness by inhibiting p21. This HIF-2α/miR-363-3p/p21 pathway offers a potential therapeutic target for melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Gene Regulation
Background:
- Melanoma stemness acquisition drives malignant transformation.
- MicroRNAs (miRNAs) regulate stemness, but miR-363-3p's role in melanoma is unclear.
Purpose of the Study:
- To investigate the role of miR-363-3p in melanoma cell stemness.
- To elucidate the regulatory pathway involving miR-363-3p, HIF-2α, and p21 in melanoma.
Main Methods:
- Analyzed miR-363-3p and HIF-2α levels in melanoma cells.
- Utilized HIF-2α knockdown and miR-363-3p inhibition.
- Performed fluorescence-activated cell sorting (FACS) for CD271high/+ cells.
- Conducted luciferase reporter gene assays to identify miR-363-3p targets.
Main Results:
- HIF-2α induces miR-363-3p, promoting melanoma stemness markers (CD133, CD271, Jarid1B, Nanog).
- miR-363-3p targets and inhibits cyclin-dependent kinase inhibitor 1A (p21).
- Inhibition of p21 upregulates stemness markers and enhances proliferation in CD271high/+ melanoma cells.
Conclusions:
- HIF-2α induces miR-363-3p, which promotes melanoma stemness by inhibiting p21.
- The HIF-2α/miR-363-3p/p21 signaling axis is a potential therapeutic target for melanoma.
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