Loss of ZIP facilitates JAK2-STAT3 activation in tamoxifen-resistant breast cancer.

Zhu, Ning; Zhang, Jing; Du, Yuping; Qin, Xiaodong; Miao, Ruidong; Nan, Jing; Chen, Xing; Sun, Jingjie et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

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Abstract

Tamoxifen, a widely used modulator of the estrogen receptor (ER), targets ER-positive breast cancer preferentially. We used a powerful validation-based insertion mutagenesis method to find that expression of a dominant-negative, truncated form of the histone deacetylase ZIP led to resistance to tamoxifen. Consistently, increased expression of full-length ZIP gives the opposite phenotype, inhibiting the expression of genes whose products mediate resistance. An important example is <i>JAK2</i> By binding to two specific sequences in the promoter, ZIP suppresses <i>JAK2</i> expression. Increased expression and activation of JAK2 when ZIP is inhibited lead to increased STAT3 phosphorylation and increased resistance to tamoxifen, both in cell culture experiments and in a mouse xenograft model. Furthermore, data from human tumors are consistent with the conclusion that decreased expression of ZIP leads to resistance to tamoxifen in ER-positive breast cancer.

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