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Published on: July 25, 2020
PIK3R1 (p85α) is somatically mutated at high frequency in primary endometrial cancer
Mary E Urick1, Meghan L Rudd, Andrew K Godwin
1Cancer Genetics Branch, National Human Genome Research Institute, NIH, Bethesda, Maryland 20892, USA.
Abstract:
Phosphoinositide 3-kinase (PI3K) is an important therapeutic target. Mutations in PIK3CA, which encodes p110α, the catalytic subunit of PI3K, occur in endometrioid endometrial cancers (EEC) and nonendometrioid endometrial cancers (NEEC). The goal of this study was to determine whether PIK3R1, which encodes p85α, the inhibitory subunit of PI3K, is mutated in endometrial carcinoma. We carried out exonic sequencing of PIK3R1 from 42 EECs and 66 NEECs. The pattern of PIK3R1 mutations was compared with the patterns of PIK3CA, PTEN, and KRAS mutations. The biochemical effect of seven PIK3R1 mutations was examined by stable expression in U2OS cells, followed by coimmunoprecipitation analysis of p110α, and Western blotting of phospho-AKT(Ser473) (p-AKT(Ser473)). We found that PIK3R1 was somatically mutated in 43% of EECs and 12% of NEECs. The majority of mutations (93.3%) were localized to the p85α-nSH2 and -iSH2 domains. Several mutations were recurrent. PIK3R1 mutations were significantly (P = 0.0015) more frequent in PIK3CA-wild type EECs (70%) than in PIK3CA mutant EECs (18%). Introduction of wild-type p85α into U2OS cells reduced the level of p-AKT(Ser473) compared with the vector control. Five p85α mutants, p85αdelH450-E451, p85αdelK459, p85αdelY463-L466, p85αdelR574-T576, and the p85αN564D positive control, were shown to bind p110α and led to increased levels of p-AKT(Ser473). The p85αR348X and p85αK511VfsX2 mutants did not bind p110α and showed no appreciable change in p-AKT(Ser473) levels. In conclusion, our study has revealed a new mode of PI3K alteration in primary endometrial tumors and warrants future studies to determine whether PIK3R1 mutations correlate with clinical outcome to targeted therapies directed against the PI3K pathway in EEC and NEEC.
Insights
Mutations in PIK3R1 are common in endometrial cancers, particularly in endometrioid types. These PIK3R1 mutations alter phosphoinositide 3-kinase (PI3K) signaling, offering new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Phosphoinositide 3-kinase (PI3K) is a key therapeutic target in cancer.
- Mutations in PIK3CA, encoding the PI3K p110α subunit, are prevalent in endometrial cancers.
- The role of PIK3R1, encoding the PI3K p85α subunit, in endometrial carcinoma remains less understood.
Purpose of the Study:
- To investigate the frequency and patterns of PIK3R1 mutations in endometrial carcinoma.
- To compare PIK3R1 mutation status with PIK3CA, PTEN, and KRAS mutations.
- To biochemically assess the functional impact of identified PIK3R1 mutations on PI3K signaling.
Main Methods:
- Exonic sequencing of PIK3R1 in 42 endometrioid endometrial cancers (EECs) and 66 nonendometrioid endometrial cancers (NEECs).
- Comparative analysis of mutation patterns with PIK3CA, PTEN, and KRAS.
- Stable expression of PIK3R1 mutants in U2OS cells for coimmunoprecipitation and Western blotting analysis of p110α binding and phospho-AKT(Ser473) levels.
Main Results:
- PIK3R1 mutations were found in 43% of EECs and 12% of NEECs.
- Most mutations (93.3%) were located in the p85α-nSH2 and -iSH2 domains, with several recurrent mutations identified.
- PIK3R1 mutations were significantly more frequent in PIK3CA-wild type EECs (70%) compared to PIK3CA mutant EECs (18%).
- Five of seven tested PIK3R1 mutants demonstrated p110α binding and increased phospho-AKT(Ser473) levels, indicating pathway activation.
Conclusions:
- PIK3R1 mutations represent a novel mechanism of PI3K pathway dysregulation in endometrial tumors.
- These findings highlight PIK3R1 as a potential therapeutic target in endometrial cancer.
- Further research is warranted to correlate PIK3R1 mutations with clinical outcomes and response to PI3K-targeted therapies.
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