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Correlation of PIK3Ca mutations with gene expression and drug sensitivity in NCI-60 cell lines
David B Whyte1, Susan L Holbeck
1Argus Biosciences, LLC 2623 Barclay Way, Belmont, CA 94002, USA. dwhyte@argusbio.com
Abstract:
The gene that encodes the alpha-isoform of phosphatidylinositol 3-kinase (PIK3Ca) is frequently mutated in human cancers. We profiled the mutation status of the PIK3Ca gene in the National Cancer Institute (NCI)-60 panel of human cancer cell lines maintained by the Developmental Therapeutics Program of the NCI. Mutation hotspots on the gene were PCR amplified and sequenced, and the trace data were analyzed with software designed to detect mutations. Seven of the cell lines tested have PIK3Ca mutations: two lines derived from breast cancer, two from colon cancer, two from ovarian cancer, and one from lung cancer. BRAF and EGFR genes were normal in the PIK3Ca mutant lines. Two of the cell lines with mutant PIK3Ca also have a mutant version of the KRAS gene. The mutation status was correlated with array-based gene expression that is publicly available for the NCI-60 cell lines. We found increased expression levels for estrogen receptor (ER) and ERBB2 in PIK3Ca mutant lines. The PIK3Ca mutation status was also correlated with compound screening data for the cell lines. PIK3Ca-mutant cell lines were relatively more sensitive than PIK3Ca-normal cell lines to the ER inhibitor tamoxifen and the AKT inhibitor triciribine, among other compounds. The results provide insights into the role of mutant PIK3Ca in oncogenic signaling and allow preliminary identification of novel targets for therapeutic intervention in cancers harboring PIK3Ca mutations.
Insights
Mutations in the PIK3Ca gene are common in human cancers. PIK3Ca-mutant cancer cell lines showed increased sensitivity to certain targeted therapies, suggesting new treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The phosphatidylinositol 3-kinase alpha (PIK3Ca) gene is frequently altered in human cancers.
- Understanding PIK3Ca mutation status is crucial for identifying cancer subtypes and potential therapeutic targets.
Purpose of the Study:
- To profile PIK3Ca mutation status within the National Cancer Institute (NCI)-60 human cancer cell line panel.
- To correlate PIK3Ca mutations with gene expression and compound sensitivity data.
Main Methods:
- Utilized Polymerase Chain Reaction (PCR) amplification and sequencing to identify PIK3Ca mutations in NCI-60 cell lines.
- Analyzed mutation data alongside publicly available gene expression and compound screening data.
Main Results:
- Identified PIK3Ca mutations in seven NCI-60 cell lines (breast, colon, ovarian, lung cancers).
- PIK3Ca-mutant lines exhibited elevated estrogen receptor (ER) and ERBB2 expression.
- Mutant PIK3Ca cell lines showed increased sensitivity to tamoxifen (ER inhibitor) and triciribine (AKT inhibitor).
Conclusions:
- PIK3Ca mutations play a significant role in cancer signaling pathways.
- Findings suggest potential therapeutic strategies targeting cancers with PIK3Ca mutations, including ER and AKT inhibitors.
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