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Transcriptional suppression of microRNA-27a contributes to laryngeal cancer differentiation via GSK-3?-involved Wnt/?-catenin pathway.


ABSTRACT: miR-27a regulates cell differentiation in a variety of diseases. However, whether and how miR-27a participates in laryngeal cancer cell differentiation remains unknown. Therefore, we explored role and molecular mechanism of miR-27a in laryngeal cancer differentiation in the study. We found that miR-27a expression was inversely correlated with laryngeal cancer differentiation degree based on the clinical pathological diagnosis of each patient. miR-27 asignificantly rescued differentiation and inhibited ?-catenin, LEF1, OCT4 and SOX2 in Wnt/?-catenin pathway in all-trans-retinoic acid (ATRA)-induced laryngeal cancer cells. Bindings of RAR? to miR-27a and miR-27a to GSK-3? were confirmed by ChIP and Luciferase reporter assays, respectively. In conclusion, miR-27a is a negative regulator in laryngeal cancer differentiation. RAR?-mediated miR-27a transcriptional inactivation releases the inhibition of miR-27a on GSK-3? leading to laryngeal cancer differentiation through GSK-3?-involved Wnt/?-catenin pathway, suggesting that miR-27a is a usefully therapeutic target at least in ATRA-induced laryngeal cancer differentiation.

SUBMITTER: Chen S 

PROVIDER: S-EPMC5362437 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Transcriptional suppression of microRNA-27a contributes to laryngeal cancer differentiation via GSK-3β-involved Wnt/β-catenin pathway.

Chen Sheng S   Sun Yuan-Yuan YY   Zhang Zhao-Xiong ZX   Li Yun-Hui YH   Xu Zhen-Ming ZM   Fu Wei-Neng WN  

Oncotarget 20170201 9


miR-27a regulates cell differentiation in a variety of diseases. However, whether and how miR-27a participates in laryngeal cancer cell differentiation remains unknown. Therefore, we explored role and molecular mechanism of miR-27a in laryngeal cancer differentiation in the study. We found that miR-27a expression was inversely correlated with laryngeal cancer differentiation degree based on the clinical pathological diagnosis of each patient. miR-27 asignificantly rescued differentiation and inh  ...[more]

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