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Tytuł pozycji:

Long non-coding RNA FOXD2-AS1 promotes cell proliferation, metastasis and EMT in glioma by sponging miR-506-5p

Tytuł:
Long non-coding RNA FOXD2-AS1 promotes cell proliferation, metastasis and EMT in glioma by sponging miR-506-5p
Autorzy:
Zhao Juan
Zeng Xue-Bin
Zhang Hong-Yan
Xiang Jie-Wei
Liu Yu-Song
Temat:
glioma
long non-coding rna foxd2-as1
microrna-506-5p
epithelial–mesenchymal transition
proliferation
metastasis
Medicine
Źródło:
Open Medicine, Vol 15, Iss 1, Pp 921-931 (2020)
Wydawca:
De Gruyter, 2020.
Rok publikacji:
2020
Kolekcja:
LCC:Medicine
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
2391-5463
Relacje:
https://doaj.org/toc/2391-5463
DOI:
10.1515/med-2020-0175
Dostęp URL:
https://doaj.org/article/4952775560e44a81bb07d349b433b67d  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.4952775560e44a81bb07d349b433b67d
Czasopismo naukowe
Long non-coding RNA forkhead box D2 adjacent opposite strand RNA 1 (FOXD2-AS1) has emerged as a potential oncogene in several tumors. However, its biological function and potential regulatory mechanism in glioma have not been fully investigated to date. In the present study, RT-qPCR was conducted to detect the levels of FOXD2-AS1 and microRNA (miR)-506-5p, and western blot assays were performed to measure the expression of CDK2, cyclinE1, P21, matrix metalloproteinase (MMP)7, MMP9, N-cadherin, E-cadherin and vimentin in glioma cells. A luciferase reporter assay was performed to verify the direct targeting of miR-506-5p by FOXD2-AS1. Subsequently, cell viability was analyzed using the CCK-8 assay. Cell migration and invasion were analyzed using Transwell and wound healing assays, respectively. The results demonstrated that FOXD2-AS1 was significantly overexpressed in glioma cells, particularly in U251 cells. Knockdown of FOXD2-AS1 in glioma cells significantly inhibited cell proliferation, migration, invasion and epithelial–mesenchymal transition (EMT) and regulated the expression of CDK2, cyclinE1, P21, MMP7 and MMP9. Next, a possible mechanism for these results was explored, and it was observed that FOXD2-AS1 binds to and negatively regulates miR-506-5p, which is known to be a tumor-suppressor gene in certain human cancer types. Furthermore, overexpression of miR-506-5p significantly inhibited cell proliferation, migration, invasion and EMT, and these effects could be reversed by transfecting FOXD2-AS1 into the cells. In conclusion, our data suggested that FOXD2-AS1 contributed to glioma proliferation, metastasis and EMT via competitively binding to miR-506-5p. FOXD2-AS1 may be a promising target for therapy in patients with glioma.

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