4.7 Article

Blocking Estrogen Signaling After the Hormone: Pyrimidine-Core Inhibitors of Estrogen Receptor-Coactivator Binding

Journal

JOURNAL OF MEDICINAL CHEMISTRY
Volume 51, Issue 20, Pages 6512-6530

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jm800698b

Keywords

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Funding

  1. National Institutes of Health [PHS 5R37DK15556, NRSA 1 F30 ES016484-01, NRSA 5 T32 GM070421]
  2. David Robertson Fellowship
  3. Illinois Distinguished Fellowship
  4. Robert D. Doolen Fellowship

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As an alternative approach to blocking estrogen action, we have developed small molecules that directly disrupt the key estrogen receptor (ER)/coactivator interaction necessary for gene activation. The more direct, protein-protein nature of this disruption might be effective even in hormone-refractory breast cancer. We have synthesized a pyrimidine-core library of moderate size, members of which act as a-helix mimics to block the ER alpha/coactivator interaction. Structure-activity relationships have been explored with various C-, N-, O-, and S-substituents on the pyrimidine core. Time-resolved fluorescence resonance energy transfer and cell-based reporter gene assays show that the most active members inhibit the ER alpha/steroid receptor coactivator interaction with Ki's in the low micromolar range. Through these studies, we have obtained a refined pharmacophore model for activity in this pyrimidine series. Furthermore, the favorable activities of several of these compounds support the feasibility that this coactivator binding inhibition mechanism for blocking estrogen action might provide a potential alternative approach to endocrine therapy.

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