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miR-342-5p inhibits osteosarcoma cell growth, migration, invasion, and sensitivity to Doxorubicin through targeting Wnt7b

Version 3 2022-11-25, 10:20
Version 2 2021-09-01, 15:20
Version 1 2019-10-11, 05:04
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posted on 2022-11-25, 10:20 authored by Qing Liu, Zhenting Wang, Xiaohua Zhou, Mingying Tang, Wei Tan, Tianshi Sun, Youwen Deng

Osteosarcoma (OS) accounts for 9 percent of cancer-related deaths in young people. The PI3K/Akt signaling, a well-known carcinogenic signaling pathway in human cancer, cooperates with other signaling pathways such as Wnt signaling to promote cancer progression. Wnt7b, as a transforming member of the Wnt family, could activate mTORC1 through PI3K-AKT signaling and is upregulated in OS. In the present study, we found that miR-342-5p inhibits Wnt7b expression via direct binding to Wnt7b 3′-UTR. miR-342-5p overexpression remarkably suppressed the viability and invasion while enhanced the apoptosis of OS cells; meanwhile, Wnt7b, β-catenin, c-myc, and cyclin D1 proteins were reduced while E-cadherin protein showed to be increased. Consistent with its expression pattern, Wnt7b exerted oncogenic effects on OS cells. Wnt7b could significantly attenuate the impacts of miR-342-5p. In conclusion, we demonstrated a miR-342-5p/Wnt7b axis that regulates the capacity of OS cells to proliferate and to invade through Wnt/β-catenin signaling. The miR-342-5p/Wnt7b axis might be novel targets for OS targeted therapy, which needs further in vivo and clinical investigations.

Funding

This work was supported by the Hunan Science and Technology Innovation Plan [2018SK2105 and kq1606001]; the Fundamental Research Funds for the Central Universities [2019zzts019 and 2019zzts809] and the Key Scientific Research and Innovation Projects of Hunan Postgraduates (CX20190074).

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