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PMID: 25264941 Published · ppublish English

Small-molecule "BRCA1-mimetics" are antagonists of estrogen receptor-α.

Molecular endocrinology (Baltimore, Md.) ·Vol. 28 卷 ·Vol. 12 Iss. ·2015-09-01

Ma Yongxian, Tomita York, Preet Anju, Clarke Robert, Englund Erikah, Grindrod Scott, Nathan Shyam, De Oliveira Eliseu, Brown Milton L, Rosen Eliot M

Abstract

Resistance to conventional antiestrogens is a major cause of treatment failure and, ultimately, death in breast cancer.,The objective of the study was to identify small-molecule estrogen receptor (ER)-α antagonists that work differently from tamoxifen and other selective estrogen receptor modulators.,Based on in silico screening of a pharmacophore database using a computed model of the BRCA1-ER-α complex (with ER-α liganded to 17β-estradiol), we identified a candidate group of small-molecule compounds predicted to bind to a BRCA1-binding interface separate from the ligand-binding pocket and the coactivator binding site of ER-α. Among 40 candidate compounds, six inhibited estradiol-stimulated ER-α activity by at least 50% in breast carcinoma cells, with IC50 values ranging between 3 and 50 μM. These ER-α inhibitory compounds were further studied by molecular and cell biological techniques.,The compounds strongly inhibited ER-α activity at concentrations that yielded little or no nonspecific toxicity, but they produced only a modest inhibition of progesterone receptor activity. Importantly, the compounds blocked proliferation and inhibited ER-α activity about equally well in antiestrogen-sensitive and antiestrogen-resistant breast cancer cells. Representative compounds disrupted the interaction of BRCA1 and ER-α in the cultured cells and blocked the interaction of ER-α with the estrogen response element. However, the compounds had no effect on the total cellular ER-α levels.,These findings suggest that we have identified a new class of ER-α antagonists that work differently from conventional antiestrogens (eg, tamoxifen and fulvestrant).

Article Info
Journal
Molecular endocrinology (Baltimore, Md.)
Abbr.
Mol Endocrinol
Published
2015-09-01
Indexed
2014-12-02
Updated
2016-11-25
Language
English
Country/Region
United States
NLM ID
8801431
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