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Published on: May 18, 2020
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.
Background:
Estrogen receptor-positive (ER-positive) metastatic breast cancer is often intractable due to endocrine therapy resistance. Although ESR1 promoter switching events have been associated with endocrine-therapy resistance, recurrent ESR1 fusion proteins have yet to be identified in advanced breast cancer.
Patients And Methods:
To identify genomic structural rearrangements (REs) including gene fusions in acquired resistance, we undertook a multimodal sequencing effort in three breast cancer patient cohorts: (i) mate-pair and/or RNAseq in 6 patient-matched primary-metastatic tumors and 51 metastases, (ii) high coverage (>500×) comprehensive genomic profiling of 287-395 cancer-related genes across 9542 solid tumors (5216 from metastatic disease), and (iii) ultra-high coverage (>5000×) genomic profiling of 62 cancer-related genes in 254 ctDNA samples. In addition to traditional gene fusion detection methods (i.e. discordant reads, split reads), ESR1 REs were detected from targeted sequencing data by applying a novel algorithm (copyshift) that identifies major copy number shifts at rearrangement hotspots.
Results:
We identify 88 ESR1 REs across 83 unique patients with direct confirmation of 9 ESR1 fusion proteins (including 2 via immunoblot). ESR1 REs are highly enriched in ER-positive, metastatic disease and co-occur with known ESR1 missense alterations, suggestive of polyclonal resistance. Importantly, all fusions result from a breakpoint in or near ESR1 intron 6 and therefore lack an intact ligand binding domain (LBD). In vitro characterization of three fusions reveals ligand-independence and hyperactivity dependent upon the 3' partner gene. Our lower-bound estimate of ESR1 fusions is at least 1% of metastatic solid breast cancers, the prevalence in ctDNA is at least 10× enriched. We postulate this enrichment may represent secondary resistance to more aggressive endocrine therapies applied to patients with ESR1 LBD missense alterations.
Conclusions:
Collectively, these data indicate that N-terminal ESR1 fusions involving exons 6-7 are a recurrent driver of endocrine therapy resistance and are impervious to ER-targeted therapies.
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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