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HER2 overexpression in urothelial carcinoma with GATA3 and PPARG copy number gains
Xiaolin Zhu1,2, Emily Chan1,3, Michelle L Turski1
1Helen Diller Family Comprehensive Cancer Center, University of California San Francisco, San Francisco, CA, United States.
Abstract:
HER2, encoded by the ERBB2 gene, is an important druggable driver of human cancer gaining increasing importance as a therapeutic target in urothelial carcinoma (UC). The genomic underpinnings of HER2 overexpression in ERBB2 nonamplified UC are poorly defined. To address this knowledge gap, we investigated 172 UC tumors from patients treated at the University of California San Francisco, using immunohistochemistry and next-generation sequencing. We found that GATA3 and PPARG copy number gains individually predicted HER2 protein expression independently of ERBB2 amplification. To validate these findings, we interrogated the Memorial Sloan Kettering/The Cancer Genome Atlas (MSK/TCGA) dataset and found that GATA3 and PPARG copy number gains individually predicted ERBB2 mRNA expression independently of ERBB2 amplification. Our findings reveal a potential link between the luminal marker HER2 and the key transcription factors GATA3 and PPARG in UC and highlight the utility of examining GATA3 and PPARG copy number states to identify UC tumors that overexpress HER2 in the absence of ERBB2 amplification. In summary, we found that an increase in copy number of GATA3 and PPARG was independently associated with higher ERBB2 expression in patient samples of UC. This finding provides a potential explanation for HER2 overexpression in UC tumors without ERBB2 amplification and a way to identify these tumors for HER2-targeted therapies.
Insights
Copy number gains in GATA3 and PPARG independently predict HER2 overexpression in urothelial carcinoma (UC) without ERBB2 amplification. This identifies UC tumors for HER2-targeted therapies.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- HER2 (ERBB2 gene) is a key therapeutic target in urothelial carcinoma (UC).
- Mechanisms of HER2 overexpression in ERBB2 nonamplified UC are not well understood.
- Identifying drivers of HER2 overexpression is crucial for targeted therapy selection.
Purpose of the Study:
- To investigate the genomic underpinnings of HER2 overexpression in ERBB2 nonamplified UC.
- To identify potential biomarkers for HER2 protein expression in UC.
- To explore the relationship between transcription factors GATA3, PPARG, and HER2 expression.
Main Methods:
- Analysis of 172 UC tumors using immunohistochemistry and next-generation sequencing.
- Validation using the Memorial Sloan Kettering/The Cancer Genome Atlas (MSK/TCGA) dataset.
- Assessment of GATA3 and PPARG copy number gains and their association with ERBB2 expression.
Main Results:
- GATA3 copy number gains independently predicted HER2 protein and mRNA expression.
- PPARG copy number gains independently predicted HER2 protein and mRNA expression.
- These associations were independent of ERBB2 amplification.
Conclusions:
- Copy number gains in GATA3 and PPARG are linked to HER2 overexpression in UC, even without ERBB2 amplification.
- GATA3 and PPARG copy number status can identify UC tumors suitable for HER2-targeted therapies.
- Findings reveal a connection between luminal markers and key transcription factors in UC.
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