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Updated: Feb 11, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
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.
Abstract:
Oestrogen receptor-α (ERα), a key driver of breast cancer, normally requires oestrogen for activation. Mutations that constitutively activate ERα without the need for hormone binding are frequently found in endocrine-therapy-resistant breast cancer metastases and are associated with poor patient outcomes. The location of these mutations in the ER ligand-binding domain and their impact on receptor conformation suggest that they subvert distinct mechanisms that normally maintain the low basal state of wild-type ERα in the absence of hormone. Such mutations provide opportunities to probe fundamental issues underlying ligand-mediated control of ERα activity. Instructive contrasts between these ERα mutations and those that arise in the androgen receptor (AR) during anti-androgen treatment of prostate cancer highlight differences in how activation functions in ERs and AR control receptor activity, how hormonal pressures (deprivation versus antagonism) drive the selection of phenotypically different mutants, how altered protein conformations can reduce antagonist potency and how altered ligand-receptor contacts can invert the response that a receptor has to an agonist ligand versus an antagonist ligand. A deeper understanding of how ligand regulation of receptor conformation is linked to receptor function offers a conceptual framework for developing new anti-oestrogens that might be more effective in preventing and treating breast cancer.
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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