scholarly journals Inhibition of MTA1 by ERα contributes to protection hepatocellular carcinoma from tumor proliferation and metastasis

Author(s):  
Lei Deng ◽  
Hui Yang ◽  
Junwei Tang ◽  
Zhe Lin ◽  
Aihong Yin ◽  
...  
2021 ◽  
Vol 11 ◽  
Author(s):  
Qianqian Zhang ◽  
Xiaohong Deng ◽  
Xiuxin Tang ◽  
Ying You ◽  
Meihua Mei ◽  
...  

PurposeHepatocellular carcinoma (HCC), a worldwide leading cause of morbidity and mortality, is the most frequent primary liver tumor. Most HCC patients are diagnosed with advanced liver cancer, resulting in a very low 5-year survival rate. Thus, there is an urgent need for the development of targeted therapies. In this study, we aimed to investigate the effect and mechanism of the miR-20a/EZH1 axis on the proliferation and metastasis of HCC and the inhibitory effect of the EZH1/EZH2 inhibitor UNC1999 on HCC.Materials and MethodsThe expression of miR-20a in human HCC tissues and cell lines was detected using quantitative real-time PCR (qRT-PCR). The expressions of proteins were analyzed with immunohistochemistry and Western blotting. Luciferase assay was used to verify whether miR-20a targets EZH1 or EZH2. The effect of miR-20a on HCC progression was studied in vivo and in vitro. The tumor inhibitory effect of UNC1999 was confirmed in vivo. CCK8 assay, wound healing assay, cell migration and invasion assay were used to evaluate the synergistic effect of UNC1999 with sorafenib. RNA sequencing (RNA-seq) was performed to screen the differentially expressed genes in the Huh7 and SMMC7721 cell lines after UNC1999, sorafenib, and combination treatments.ResultsIn this study, miR-20a showed a lower expression in both HCC tissues and cell lines. MiR-20a inhibited the proliferation and migration of SMMC7721 and Huh7 cells. The results of the luciferase assay and Western blot analysis revealed that miR-20a directly targeted EZH1, a histone methyltransferase. We demonstrated that miR-20a negatively regulated the expression of EZH1 and inhibited the proliferation and metastasis of HCC by reducing H3K27 methylation. We found UNC1999 inhibited tumor cells proliferation and enhanced the inhibitory effect of sorafenib.ConclusionWe demonstrated that miR-20a suppresses the tumor proliferation and metastasis in HCC by directly targeting EZH1. UNC1999 can inhibit tumor proliferation in vivo and increase the sensitivity of hepatoma cell lines to sorafenib.


2019 ◽  
Author(s):  
Na Li ◽  
Jiao Xiong ◽  
Zhengyu Li

Abstract Background: Homeobox B4 (HOXB4) is associated with the poor prognosis of various cancer types. However, how HOXB4 promotes ovarian cancer (OV) progression remains to be determined. Methods:The Cancer Genome Atlas (TCGA) database indicated that high level of HOXB4 in OV was correlated with poor prognosis. The biological functions of HOXB4 were confirmed through a colony formation, migration, and invasion assay. The effect of HOXB4 on the expression of EMT and cancer stem cell markers was detected. The transcriptional target of HOXB4 was DHDDS, which was detected by a ChIP assay. A xenograft tumor model was performed in nude mice to detect the role of HOXB4 in tumor proliferation and metastasis. Results:Results showed that the expression of HOXB4 was higher in OV tissues than in normal tissues and correlated with the poor prognosis of OV. HOXB4 knockdown suppressed the proliferation and invasion ability of OV cells in vitro. Conversely, these effects were enhanced by the up-regulation of HOXB4 in OV cells. The binding of two DNA motifs through HOXB4 regulated DHDDS expression and contributed to the malignant progression of OV. The role of HOXB4 in promoting tumor proliferation and metastasis was verified in mice. Further investigation revealed that HOXB4 triggered Snail and Zeb1 expression. Conclusion: Overall, HOXB4 overexpression was remarkably correlated with the poor prognosis of OV. HOXB4 up-regulated DHDDS, which co-contributed to the enhancer proliferation and invasion of OV cells, thus accelerating the malignant progression of OV.


2018 ◽  
Vol 16 (12) ◽  
pp. 1927-1939 ◽  
Author(s):  
Xiaomei Sun ◽  
Samina Dongol ◽  
Chunping Qiu ◽  
Ying Xu ◽  
Chenggong Sun ◽  
...  

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