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Optimization of a Multiplex RNA-based Expression Assay Using Breast Cancer Archival Material
Published on: August 1, 2018
Her2 amplification, Rel-A, and Bach1 can influence APOBEC3A expression in breast cancer cells
Madeline Dennis1, Alyssa Hurley2, Nicholas Bray1
1School of Molecular Biosciences and Center for Reproductive Biology, Washington State University, Pullman, Washington, United States of America.
Abstract:
APOBEC-induced mutations occur in 50% of sequenced human tumors, with APOBEC3A (A3A) being a major contributor to mutagenesis in breast cancer cells. The mechanisms that cause A3A activation and mutagenesis in breast cancers are still unknown. Here, we describe factors that influence basal A3A mRNA transcript levels in breast cancer cells. We found that basal A3A mRNA correlates with A3A protein levels and predicts the amount of APOBEC signature mutations in a panel of breast cancer cell lines, indicating that increased basal transcription may be one mechanism leading to breast cancer mutagenesis. We also show that alteration of ERBB2 expression can drive A3A mRNA levels, suggesting the enrichment of the APOBEC mutation signature in Her2-enriched breast cancer could in part result from elevated A3A transcription. Hierarchical clustering of transcripts in primary breast cancers determined that A3A mRNA was co-expressed with other genes functioning in viral restriction and interferon responses. However, reduction of STAT signaling via inhibitors or shRNA in breast cancer cell lines had only minor impact on A3A abundance. Analysis of single cell RNA-seq from primary tumors indicated that A3A mRNA was highest in infiltrating immune cells within the tumor, indicating that correlations of A3A with STAT signaling in primary tumors may be result from higher immune infiltrates and are not reflective of STAT signaling controlling A3A expression in breast cancer cells. Analysis of ATAC-seq data in multiple breast cancer cell lines identified two transcription factor sites in the APOBEC3A promoter region that could promote A3A transcription. We determined that Rel-A, and Bach1, which have binding sites in these peaks, elevated basal A3A expression. Our findings highlight a complex and variable set of transcriptional activators for A3A in breast cancer cells.
Insights
APOBEC3A (A3A) mRNA levels correlate with protein and APOBEC mutations in breast cancer. ERBB2 and transcription factors Rel-A/Bach1 influence A3A expression, revealing mechanisms of breast cancer mutagenesis.
Area of Science:
- Genetics
- Cancer Biology
- Molecular Oncology
Background:
- APOBEC-induced mutations are prevalent in human cancers, with APOBEC3A (A3A) a key mutagen in breast cancer.
- The mechanisms driving A3A activation and mutagenesis in breast cancer remain largely unknown.
- Understanding A3A regulation is crucial for deciphering cancer mutation signatures.
Purpose of the Study:
- To identify factors influencing basal A3A mRNA transcript levels in breast cancer cells.
- To investigate the relationship between A3A expression and APOBEC signature mutations.
- To explore the role of ERBB2 and specific transcription factors in A3A regulation.
Main Methods:
- Analysis of A3A mRNA and protein levels across breast cancer cell lines.
- Correlation studies between A3A expression and APOBEC mutation signatures.
- Investigation of ERBB2 expression effects on A3A mRNA.
- Transcriptional profiling and ATAC-seq to identify regulatory elements and transcription factors.
- Inhibition studies targeting STAT signaling.
Main Results:
- Basal A3A mRNA levels correlate with A3A protein and predict APOBEC mutation signatures in breast cancer cell lines.
- Altered ERBB2 expression influences A3A mRNA levels, potentially explaining APOBEC enrichment in Her2-enriched breast cancer.
- STAT signaling inhibition had minimal impact on A3A abundance in cell lines.
- A3A mRNA is highest in infiltrating immune cells in primary tumors, not breast cancer cells.
- Transcription factors Rel-A and Bach1 bind to promoter regions and elevate basal A3A expression.
Conclusions:
- Increased basal A3A transcription is a potential mechanism for breast cancer mutagenesis.
- ERBB2 and transcription factors Rel-A/Bach1 are key regulators of A3A expression in breast cancer.
- A3A regulation is complex and cell-type specific, with immune cells playing a role in primary tumors.

