Tamoxifen Represses miR-200 MicroRNAs and Promotes Epithelial-to-Mesenchymal Transition by Up-Regulating c-Myc in Endometrial Carcinoma Cell Lines

Author:

Bai Jiu-Xu1,Yan Bo2,Zhao Zhi-Ning3,Xiao Xiao4,Qin Wei-Wei5,Zhang Rui2,Jia Lin-Tao2,Meng Yan-Ling6,Jin Bo-Quan6,Fan Dai-Ming4,Wang Tao6,Yang An-Gang6

Affiliation:

1. Department of Blood Purification (J.-X.B.), General Hospital of Shenyang Military Area Command, Shenyang 110016, China;

2. Department of Biochemistry and Molecular Biology (B.Y., R.Z., L.-T.J.),Fourth Military Medical University, Xi’an 710032, China;

3. 451 Hospital of Chinese PLA (Z.-N.Z.), Xi’an 710054, China

4. Xijing Hospital of Digestive Diseases (X.X., D.-M.F.),Fourth Military Medical University, Xi’an 710032, China;

5. Department of Hemotology, Tangdu Hospital (W.-W.Q.), Fourth Military Medical University, Xi’an 710032, China;

6. State Key Laboratory of Cancer Biology, Department of Immunology (J.-X.B., Z.-N.Z., Y.-L.M., B.-Q.J., T.W., A.-G.Y.),Fourth Military Medical University, Xi’an 710032, China;

Abstract

Although tamoxifen (TAM), a selective estrogen receptor modulator, has been widely used in the treatment of hormone-responsive breast cancer, its estrogen-like effect increases the risk of endometrial cancer. However, the molecular mechanisms of TAM-induced endometrial carcinoma still remain unclear. In this report, we explored the role of microRNAs (miRNAs) in TAM-induced epithelial-mesenchymal transition (EMT) in ECC-1 and Ishikawa endometrial cancer cell lines and found miR-200 is involved in this process via the regulation of c-Myc. When treated with TAM, ECC-1 and Ishikawa cells were characterized by higher invasiveness and motility and underwent EMT. miR-200, a miRNA family with tumor suppressive functions in a wide range of cancers, was found reduced in response to TAM treatment. Consistent with zinc finger E-box binding homeobox 2, which was confirmed as a direct target of miR-200b in endometrial cancer cell lines, some other key factors of EMT such as Snail and N-cadherin increased, whereas E-cadherin decreased in the TAM-treated cells, contributing to TAM-induced EMT in these endometrial cancer cells. In addition, we showed that c-Myc directly binds to and represses the promoter of miR-200 miRNAs, and its up-regulation in TAM-treated endometrial cancer cells leads to the down-regulation of miR-200 and eventually to EMT. Collectively, our data suggest that TAM can repress the miR-200 family and induce EMT via the up-regulation of c-Myc in endometrial cancer cells. These findings describe a possible mechanism of TAM-induced EMT in endometrial cancer and provide a potential new therapeutic strategy for it.

Publisher

The Endocrine Society

Subject

Endocrinology

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