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Frequent ESR1 and CDK Pathway Copy-Number Alterations in Metastatic Breast Cancer
Ahmed Basudan1,2,3, Nolan Priedigkeit2,4, Ryan J Hartmaier2
1Department of Human Genetics, University of Pittsburgh, Pittsburgh, Pennsylvania.
Abstract:
DNA sequencing has identified a limited number of driver mutations in metastatic breast cancer beyond single base-pair mutations in the estrogen receptor (ESR1). However, our previous studies and others have observed that structural variants, such as ESR1 fusions, may also play a role. Therefore, we expanded upon these observations by performing a comprehensive and highly sensitive characterization of copy-number (CN) alterations in a large clinical cohort of metastatic specimens. NanoString DNA hybridization was utilized to measure CN gains, amplifications, and deletions of 67 genes in 108 breast cancer metastases, and in 26 cases, the patient-matched primary tumor. For ESR1, a copyshift algorithm was applied to identify CN imbalances at exon-specific resolution and queried large data sets (>15,000 tumors) that had previously undergone next-generation sequencing (NGS). Interestingly, a subset of ER+ tumors showed increased ESR1 CN (11/82, 13%); three had CN amplifications (4%) and eight had gains (10%). Increased ESR1 CN was enriched in metastatic specimens versus primary tumors, and this was orthogonally confirmed in a large NGS data set. ESR1-amplified tumors showed a site-specific enrichment for bone metastases and worse outcomes than nonamplified tumors. No ESR1 CN amplifications and only one gain was identified in ER- tumors. ESR1 copyshift was present in 5 of the 11 ESR1-amplified tumors. Other frequent amplifications included ERBB2, GRB7, and cell-cycle pathway members CCND1 and CDK4/6, which showed mutually exclusivity with deletions of CDKN2A, CDKN2B, and CDKN1B. IMPLICATIONS: Copy-number alterations of ESR1 and key CDK pathway genes are frequent in metastatic breast cancers, and their clinical relevance should be tested further.
Insights
Copy-number alterations in estrogen receptor 1 (ESR1) are common in metastatic breast cancer, particularly amplifications, and linked to bone metastases and poorer outcomes. These genetic changes, along with cell-cycle pathway alterations, warrant further clinical investigation.
Area of Science:
- Genomics
- Cancer Biology
- Oncology
Background:
- Metastatic breast cancer driver mutations are often limited to single base-pair changes.
- Structural variants, including estrogen receptor 1 (ESR1) fusions, may also contribute to metastatic breast cancer progression.
- Comprehensive characterization of copy-number (CN) alterations is needed.
Purpose of the Study:
- To comprehensively characterize copy-number (CN) alterations in metastatic breast cancer specimens.
- To investigate the role of ESR1 CN alterations and their clinical relevance.
- To identify frequent CN alterations in key cancer pathways.
Main Methods:
- NanoString DNA hybridization used to measure CN of 67 genes in 108 metastatic breast cancer specimens and matched primary tumors.
- Copyshift algorithm applied for exon-specific ESR1 CN imbalance analysis.
- Analysis of large next-generation sequencing (NGS) datasets (>15,000 tumors).
Main Results:
- Increased ESR1 CN (gains and amplifications) found in 13% of ER+ metastatic tumors, enriched compared to primary tumors.
- ESR1 amplifications were associated with bone metastases and worse outcomes.
- Frequent amplifications of ERBB2, GRB7, CCND1, CDK4/6, and deletions of CDKN2A, CDKN2B, CDKN1B were observed.
Conclusions:
- Copy-number alterations of ESR1 are frequent in metastatic breast cancer and clinically relevant.
- Alterations in the CDK pathway genes are also common and may interact with ESR1 CN status.
- Further clinical testing of these copy-number alterations is warranted.
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