Hotspot ESR1 Mutations Are Multimodal and Contextual Modulators of Breast Cancer Metastasis
Zheqi Li1,2, Yang Wu2,3, Megan E Yates2,4,5
1Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, Pennsylvania.
Abstract:
Constitutively active estrogen receptor α (ER/ESR1) mutations have been identified in approximately one-third of ER+ metastatic breast cancers. Although these mutations are known as mediators of endocrine resistance, their potential role in promoting metastatic disease has not yet been mechanistically addressed. In this study, we show the presence of ESR1 mutations exclusively in distant but not local recurrences in five independent breast cancer cohorts. In concordance with transcriptomic profiling of ESR1-mutant tumors, genome-edited ESR1 Y537S and D538G-mutant cell models exhibited a reprogrammed cell adhesive gene network via alterations in desmosome/gap junction genes and the TIMP3/MMP axis, which functionally conferred enhanced cell-cell contacts while decreasing cell-extracellular matrix adhesion. In vivo studies showed ESR1-mutant cells were associated with larger multicellular circulating tumor cell (CTC) clusters with increased compactness compared with ESR1 wild-type CTCs. These preclinical findings translated to clinical observations, where CTC clusters were enriched in patients with ESR1-mutated metastatic breast cancer. Conversely, context-dependent migratory phenotypes revealed cotargeting of Wnt and ER as a vulnerability in a D538G cell model. Mechanistically, mutant ESR1 exhibited noncanonical regulation of several metastatic pathways, including secondary transcriptional regulation and de novo FOXA1-driven chromatin remodeling. Collectively, these data provide evidence for ESR1 mutation-modulated metastasis and suggest future therapeutic strategies for targeting ESR1-mutant breast cancer.
Significance:
Context- and allele-dependent transcriptome and cistrome reprogramming in mutant ESR1 cell models elicit diverse metastatic phenotypes related to cell adhesion and migration, which can be pharmacologically targeted in metastatic breast cancer.
Insights
Estrogen receptor alpha (ESR1) mutations in metastatic breast cancer promote disease spread by altering cell adhesion and increasing circulating tumor cell clusters. Targeting these mutations offers new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Estrogen receptor alpha (ESR1) mutations are found in about one-third of ER+ metastatic breast cancers.
- These mutations are linked to endocrine resistance, but their role in promoting metastasis is unclear.
Purpose of the Study:
- To investigate the mechanistic role of ESR1 mutations in promoting breast cancer metastasis.
- To identify potential therapeutic targets for ESR1-mutated metastatic breast cancer.
Main Methods:
- Analysis of five independent breast cancer cohorts to examine ESR1 mutation presence in local vs. distant recurrences.
- Genome-edited ESR1 Y537S and D538G mutant cell models for transcriptomic and adhesion profiling.
- In vivo studies using cell models to assess circulating tumor cell (CTC) cluster formation and characteristics.
- Clinical correlation of CTC clusters with ESR1 mutation status.
Main Results:
- ESR1 mutations were exclusively found in distant, not local, breast cancer recurrences.
- ESR1 mutant cells showed altered cell adhesion networks, promoting cell-cell contact and reducing cell-extracellular matrix adhesion.
- ESR1 mutant cells formed larger, more compact CTC clusters, which were enriched in patients with ESR1-mutated metastatic breast cancer.
- Mutant ESR1 noncanonically regulated metastatic pathways, including chromatin remodeling.
Conclusions:
- ESR1 mutations actively modulate breast cancer metastasis by altering cell adhesion and promoting CTC cluster formation.
- Targeting Wnt and ER pathways presents a potential therapeutic vulnerability in ESR1-mutated breast cancer.
- These findings support the development of novel therapeutic strategies for ESR1-mutant metastatic breast cancer.
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