4.6 Article

Ligand-dependent interaction of estrogen receptor-α with members of the forkhead transcription factor family

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 276, Issue 36, Pages 33554-33560

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M105555200

Keywords

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Funding

  1. NCI NIH HHS [R01 CA070297-07, R29 CA070297, R01 CA087767-05, R01 CA77350, R29 CA070297-05, R01 CA087767-02, R01 CA087767-04, R01 CA087767-01A2, R01 CA070297-11A2, R29 CA070297-05S1, R01 CA070297-06A1, R01 CA070297-10, R01 CA070297-09, R01 CA087767, R01 CA070297-12, R01 CA070297, R01 CA070297-08, R01 CA087767-03, R29 CA070297-03] Funding Source: Medline
  2. NIDDK NIH HHS [R01 DK061002-05, R56 DK061002-06A1, R01 DK061002-04, R01 DK061002-02, R01 DK061002-03, R01 DK061002, R56 DK061002, R01 DK061002-01A1] Funding Source: Medline

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Estrogen acting through the estrogen receptor (ER) is able to regulate cell growth and differentiation of a variety of normal tissues and hormone-responsive tumors. Ligand-activated DR binds DNA and transactivates the promoters of estrogen target genes. In addition, ligand-activated ER can interact with other factors to alter the physiology and growth of cells. Using a yeast two-hybrid screen, we have identified an interaction between ER alpha and the proapoptotic forkhead transcription factor FKHR. The ER alpha -FKHR interaction depends on beta -estradiol and is reduced significantly in the absence of hormone or the presence of Tamoxifen. A glutathione S-transferase pull-down assay was used to confirm the interaction and localized two interaction sites, one in the forkhead domain and a second in the carboxyl terminus. The FKHR interaction was specific to ER alpha and was not detected with other ligand-activated steroid receptors. The related family members, FKHRL1 and AFX, also bound to ER alpha in the presence of beta -estradiol. FKHR augmented ER alpha transactivation through an estrogen response element. Conversely, ER alpha repressed FKHR-mediated transactivation through an insulin response sequence, and cell cycle arrest induced by FKHRL1 in MCF7 cells was abrogated by estradiol. These results suggest a novel mechanism of estrogen action that involves regulation of the proapoptotic forkhead transcription factors.

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