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  • CDK2-mediated site-specific...
    Nie, Lei; Wei, Yongkun; Zhang, Fei; Hsu, Yi-Hsin; Chan, Li-Chuan; Xia, Weiya; Ke, Baozhen; Zhu, Cihui; Deng, Rong; Tang, Jun; Yao, Jun; Chu, Yu-Yi; Zhao, Xixi; Han, Ye; Hou, Junwei; Huo, Longfei; Ko, How-Wen; Lin, Wan-Chi; Yamaguchi, Hirohito; Hsu, Jung-Mao; Yang, Yi; Pan, Dean N; Hsu, Jennifer L; Kleer, Celina G; Davidson, Nancy E; Hortobagyi, Gabriel N; Hung, Mien-Chie

    Nature communications, 11/2019, Letnik: 10, Številka: 1
    Journal Article

    Triple-negative breast cancer (TNBC), which lacks estrogen receptor α (ERα), progesterone receptor, and human epidermal growth factor receptor 2 (HER2) expression, is closely related to basal-like breast cancer. Previously, we and others report that cyclin E/cyclin-dependent kinase 2 (CDK2) phosphorylates enhancer of zeste homolog 2 (EZH2) at T416 (pT416-EZH2). Here, we show that transgenic expression of phospho-mimicking EZH2 mutant EZH2 in mammary glands leads to tumors with TNBC phenotype. Coexpression of EZH2 in mammary epithelia of HER2/Neu transgenic mice reprograms HER2-driven luminal tumors into basal-like tumors. Pharmacological inhibition of CDK2 or EZH2 allows re-expression of ERα and converts TNBC to luminal ERα-positive, rendering TNBC cells targetable by tamoxifen. Furthermore, the combination of either CDK2 or EZH2 inhibitor with tamoxifen effectively suppresses tumor growth and markedly improves the survival of the mice bearing TNBC tumors, suggesting that the mechanism-based combination therapy may be an alternative approach to treat TNBC.