Estrogen receptor β exon 3-deleted mouse: The importance of non-ERE pathways in ERβ signaling

Laure Maneix1, Per Antonson2, Patricia Humire2

  • 1Center for Nuclear Receptors and Cell Signaling, Department of Biology and Biochemistry, University of Houston, Houston, TX 77204; and.

Insights

Estrogen receptor beta (ERβ) knockout mice show varied phenotypes. This study

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Genetics

Background:

  • Estrogen receptor beta (ERβ) plays a role in various physiological processes.
  • Previous ERβ knockout mouse models exhibited differing phenotypes, creating ambiguity regarding ERβ's precise functions.

Purpose of the Study:

  • To investigate the physiological function of ERβ by creating and analyzing a new ERβ exon 3-deleted mouse model (ERβ-Δex3).
  • To clarify the discrepancies observed in previous ERβ knockout mouse studies.

Main Methods:

  • Generation of an ERβ exon 3-deleted (ERβ-Δex3) mouse model.
  • Phenotypic analysis focusing on reproductive and organ-specific abnormalities.
  • Western blot analysis using anti-ERβ antibodies to detect ERβ protein expression and integrity.
  • Electrophoretic mobility shift assay (EMSA) to assess ERβ DNA-binding activity to activator protein-1 response elements.
  • Immunohistochemical analysis of prostate epithelial cells for markers like Ki67, androgen receptor, and Dachshund-1.

Main Results:

  • The ERβ-Δex3 mice exhibited anovulation as the sole observable defect.
  • An ERβ protein with an intact ligand-binding domain and C terminus was expressed in prostate epithelial cells.
  • ERβ-dependent DNA binding to activator protein-1 response elements was detected via EMSA.
  • Prostate epithelial cell markers (Ki67, androgen receptor, Dachshund-1) remained unaltered in ERβ-Δex3 mice compared to controls.

Conclusions:

  • The ERβ-Δex3 mouse model reveals that ERβ's role in anovulation is significant, while other functions observed in prior models may not be directly dependent on classical ERβ activity.
  • ERβ exhibits transcriptional activity independent of binding to canonical estrogen response elements (EREs).
  • The findings suggest a complex mechanism for ERβ-mediated gene regulation, potentially involving non-classical pathways or interactions.