4.5 Article

Endoxifen, 4-Hydroxytamoxifen and an Estrogenic Derivative Modulate Estrogen Receptor Complex Mediated Apoptosis in Breast Cancer

期刊

MOLECULAR PHARMACOLOGY
卷 94, 期 2, 页码 812-822

出版社

AMER SOC PHARMACOLOGY EXPERIMENTAL THERAPEUTICS
DOI: 10.1124/mol.117.111385

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资金

  1. Department of Defense Breast Center of Excellence Program [W81XWH-06-1-0590]
  2. Susan G. Komen for the Cure Foundation [SAC100009]
  3. National Institutes of Health Lombardi Comprehensive Cancer Center [P30 CA051008]
  4. National Institutes of Health MD Anderson's Cancer Center [CA016672]
  5. Institute of Chemistry Timisoara of the Romanian Academy [1.1/2015]
  6. Romanian National Authority for Scientific Research and Innovation, CNCS-UEFISCDI [PN-II-RU-TE-2014-4-0422]
  7. Department of Defense BCRP [W81XWH-14-1-0360]
  8. Susan G Komen Postdoctoral Fellowship [PDF14301382]
  9. Virginia and D. K. Ludwig Fund for Cancer Research

向作者/读者索取更多资源

Estrogen therapy was used to treat advanced breast cancer in postmenopausal women for decades until the introduction of tamoxifen. Resistance to long-term estrogen deprivation (LTED) with tamoxifen and aromatase inhibitors used as a treatment of breast cancer inevitably occurs, but unexpectedly low-dose estrogen can cause regression of breast cancer and increase disease-free survival in some patients. This therapeutic effect is attributed to estrogen-induced apoptosis in LTED breast cancer. Here, we describe modulation of the estrogen receptor (ER) liganded with antiestrogens (endoxifen and 4-hydroxytamoxifen) and an estrogenic triphenylethylene (TPE), ethoxytriphenylethylene (EtOXTPE), on estrogen-induced apoptosis in LTED breast cancer cells. Our results show that the angular TPE estrogen (EtOXTPE) is able to induce the ER-mediated apoptosis only at a later time compared with planar estradiol in these cells. Using real-time polymerase chain reaction, chromatin immunoprecipitation, western blotting, molecular modeling, and X-ray crystallography techniques, we report novel conformations of the ER complex with an angular estrogen EtOXTPE and endoxifen. We propose that alteration of the conformation of the ER complexes, with changes in coactivator binding, governs estrogen-induced apoptosis through the protein kinase regulated by RNA-like endoplasmic reticulum kinase sensor system to trigger an unfolded protein response.

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