Structural underpinnings of oestrogen receptor mutations in endocrine therapy resistance

John A Katzenellenbogen1, Christopher G Mayne2, Benita S Katzenellenbogen3

  • 1Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL, USA. jkatzene@illinois.edu.

Nature Reviews. Cancer
|April 18, 2018
PubMed

Insights

Constitutively active oestrogen receptor-alpha (ERα) mutations drive endocrine-therapy-resistant breast cancer. Understanding these ERα mutations and comparing them to androgen receptor (AR) mutations offers insights into developing novel anti-oestrogens.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Oncology

Background:

  • Oestrogen receptor-alpha (ERα) drives breast cancer and requires oestrogen for activation.
  • Mutations causing constitutive ERα activation are linked to endocrine-therapy resistance and poor outcomes in metastatic breast cancer.
  • These mutations occur in the ER ligand-binding domain, altering receptor conformation and basal activity.

Purpose of the Study:

  • To investigate mechanisms of ligand-mediated control of ERα activity.
  • To compare ERα mutations in breast cancer with androgen receptor (AR) mutations in prostate cancer.
  • To explore how altered receptor conformations affect ligand binding and response.

Main Methods:

  • Comparative analysis of ERα and AR mutations in endocrine-therapy resistance.
  • Examination of receptor conformation changes due to mutations.
  • Investigation of altered ligand-receptor interactions.

Main Results:

  • ERα and AR mutations reveal distinct activation mechanisms and responses to hormonal pressures.
  • Altered protein conformations in mutants can decrease antagonist effectiveness.
  • Mutations can invert receptor responses to agonists versus antagonists.

Conclusions:

  • Understanding ligand regulation of receptor conformation is key to ERα function.
  • This knowledge provides a framework for developing improved anti-oestrogen therapies for breast cancer.
  • Comparative studies of ER and AR highlight fundamental differences in hormone receptor regulation.

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