Targeting unique ligand binding domain structural features downregulates DKK1 in Y537S ESR1 mutant breast cancer

K S Young1, G R Hancock1, E C Fink1

  • 1Department of Cancer Biology, Loyola University Chicago Stritch School of Medicine, Maywood, IL, 50153, USA.

PubMed

Insights

A novel drug, T6I-29, shows promise against estrogen receptor-positive breast cancer with common mutations. This selective estrogen receptor modulator (SERM) targets endocrine therapy resistance and downregulates DKK1, a protein implicated in cancer growth.

Area of Science:

  • Endocrinology
  • Oncology
  • Molecular Biology

Background:

  • Endocrine therapy resistance is a major challenge in breast cancer treatment.
  • Mutations in estrogen receptor alpha (ERα), particularly Y537S, confer resistance to standard therapies.
  • Next-generation selective estrogen receptor modulators (SERMs) and degraders/downregulators (SERDs) offer potential but often have non-durable responses.

Purpose of the Study:

  • To comprehensively evaluate the activities of the novel SERM, T6I-29, against breast cancer cells with the Y537S ERα mutation.
  • To elucidate the molecular mechanisms underlying T6I-29's efficacy in endocrine-resistant breast cancer.
  • To identify potential new therapeutic targets associated with T6I-29 treatment.

Main Methods:

  • Structural-biochemical analyses
  • In vitro cell-based assays
  • In vivo preclinical models
  • RNA sequencing to assess gene expression changes

Main Results:

  • T6I-29 demonstrates significant anti-proliferative activity in Y537S ERα breast cancer cells.
  • T6I-29 treatment leads to a neomorphic downregulation of DKK1, a glycoprotein with known oncogenic roles.
  • DKK1 is found to be significantly enriched in the plasma of ER-positive breast cancer patients compared to healthy controls.

Conclusions:

  • T6I-29 is an effective agent against Y537S ERα-mutant breast cancer, offering a new therapeutic strategy.
  • The downregulation of DKK1 by T6I-29 represents a novel mechanism of action and a potential therapeutic pathway.
  • This study highlights the potential of novel SERMs and SERDs in overcoming endocrine resistance and identifies DKK1 as a biomarker and therapeutic target.

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