Recurrent hyperactive ESR1 fusion proteins in endocrine therapy-resistant breast cancer

R J Hartmaier1, S E Trabucco2, N Priedigkeit3

  • 1Foundation Medicine Inc., Cambridge; Department of Pharmacology and Chemical Biolog, UPMC Hillman Cancer Center, University of Pittsburgh, Pittsburgh, USA; Women's Cancer Research Center, Magee-Women's Research Institute, Pittsburgh, USA.

Abstract

Insights

New N-terminal ESR1 fusions drive endocrine therapy resistance in metastatic breast cancer. These fusion proteins, lacking a ligand binding domain, are impervious to ER-targeted therapies, offering new insights into treatment resistance.

Area of Science:

  • Genomics
  • Oncology
  • Molecular Biology

Background:

  • Estrogen receptor-positive (ER-positive) metastatic breast cancer presents challenges due to endocrine therapy resistance.
  • While ESR1 promoter switching is linked to resistance, recurrent ESR1 fusion proteins in advanced breast cancer remain unidentified.

Purpose of the Study:

  • To identify genomic structural rearrangements (REs), including gene fusions, in acquired resistance to endocrine therapy.
  • To characterize the role of ESR1 fusions in ER-positive metastatic breast cancer.

Main Methods:

  • Multimodal sequencing across three patient cohorts: primary-metastatic tumors, metastases, and circulating tumor DNA (ctDNA).
  • Utilized mate-pair, RNAseq, comprehensive genomic profiling, and ultra-high coverage sequencing.
  • Applied a novel algorithm (copyshift) for ESR1 RE detection from targeted sequencing data.

Main Results:

  • Identified 88 ESR1 REs in 83 patients, with 9 confirmed ESR1 fusion proteins.
  • ESR1 REs are enriched in ER-positive metastatic disease and co-occur with ESR1 missense alterations.
  • All identified fusions lack an intact ligand binding domain (LBD), exhibit ligand-independence, and hyperactivity.

Conclusions:

  • N-terminal ESR1 fusions involving exons 6-7 are recurrent drivers of endocrine therapy resistance.
  • These ESR1 fusions are impervious to ER-targeted therapies.
  • The prevalence of ESR1 fusions in ctDNA is significantly enriched, potentially indicating secondary resistance to aggressive endocrine therapies.

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