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PKA-induced resistance to tamoxifen is associated with an altered orientation of ERalpha towards co-activator SRC-1.

Wilbert Zwart ,
Alexander Griekspoor ,
Valeria Berno ,
Kim Lakeman ,
Kees Jalink ,
Michael Mancini ,
Jacques Neefjes ,
Rob Michalides

Abstract

Resistance to tamoxifen is observed in half of the recurrences in breast cancer, where the anti-estrogen tamoxifen acquires agonistic properties for transactivating estrogen receptor alpha (ERalpha). In a previous study, we showed that protein kinase A (PKA)-mediated phosphorylation of serine 305 (S305) of ERalpha results in resistance to tamoxifen. Now, we demonstrate that phosphorylation of S305 in ERalpha by PKA leads to an altered orientation between ERalpha and its coactivator SRC-1, which renders the transcription complex active in the presence of tamoxifen. This altered orientation involves the C-termini of ERalpha and SRC-1, which required a prolonged AF-1-mediated interaction. This intermolecular reorientation as a result of PKA-mediated phosphorylation of ERalpha-S305 and tamoxifen binding provides a unique model for resistance to the anticancer drug tamoxifen.

More about this publication

The EMBO journal

Volume 26
Issue nr. 15
Pages 3534-44
Publication date 08-08-2007

Full text links

Publisher website (DOI) 10.1038/sj.emboj.7601791
Europe PubMed Central 17627277
Pubmed 17627277

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