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Mutational analysis of PI3K/AKT signaling pathway in tamoxifen exemestane adjuvant multinational pathology study
Purpose:
Deregulation of key PI3K/AKT pathway genes may contribute to endocrine resistance in breast cancer (BC). PIK3CA is the most frequently mutated gene in luminal BC (35%); however, the effect of mutations in helical versus kinase domains remains controversial. We hypothesize that improved outcomes occur in patients with estrogen receptor–positive (ER positive) BC receiving endocrine therapy and possessing PIK3CA mutations.
Materials And Methods:
DNA was extracted from 4,540 formalin-fixed paraffin-embedded BC samples from the Exemestane Versus Tamoxifen-Exemestane pathology study. Mutational analyses were performed for 25 mutations (PIK3CAx10, AKT1x1, KRASx5, HRASx3, NRASx2 and BRAFx4).
Results:
PIK3CA mutations were frequent (39.8%), whereas RAS/RAF mutations were rare (1%). In univariable analyses PIK3CA mutations were associated with significantly improved 5-year distant relapse-free survival (DRFS; HR, 0.76; 95% CI, 0.63 to 0.91; P = .003). However, a multivariable analysis correcting for known clinical and biologic prognostic factors failed to demonstrate that PIK3CA mutation status is an independent prognostic marker for DRFS (HR, 0.92; 95% CI, 0.75 to 1.12; P = .4012). PIK3CA mutations were more frequent in low-risk luminal BCs (e.g., grade 1 nodev 3, node-negative v -positive), confounding the relationship between mutations and outcome.
Conclusion:
PIK3CA mutations are present in approximately 40% of luminal BCs but are not an independent predictor of outcome in the context of endocrine therapy, whereas RAS/RAF mutations are rare inluminal BC. A complex relationship between low-risk cancers and PIK3CA mutations was identified. Although the PI3K/AKT pathway remains a viable therapeutic target as the result of ahigh mutation frequency, PIK3CA mutations do not seem to affect residual risk following treatment with endocrine therapy.
Insights
PIK3CA mutations are common in estrogen receptor-positive breast cancer but do not independently predict outcomes with endocrine therapy. These mutations are more frequent in low-risk cancers, complicating their prognostic role.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Deregulation of the PI3K/AKT pathway is implicated in endocrine resistance in breast cancer.
- PIK3CA is the most frequently mutated gene in luminal breast cancer, but the prognostic significance of its mutations is debated.
Purpose of the Study:
- To investigate the association between PIK3CA mutations and outcomes in estrogen receptor-positive (ER+) breast cancer patients treated with endocrine therapy.
- To determine if PIK3CA mutation status is an independent prognostic marker for distant relapse-free survival (DRFS).
Main Methods:
- DNA from 4,540 formalin-fixed paraffin-embedded breast cancer samples was analyzed for mutations in PIK3CA, AKT1, KRAS, HRAS, NRAS, and BRAF.
- Mutational analyses included 25 specific mutations across these genes.
Main Results:
- PIK3CA mutations were found in 39.8% of samples, while RAS/RAF mutations were rare (1%).
- Univariable analysis showed PIK3CA mutations were associated with improved 5-year DRFS (HR, 0.76; P = .003).
- Multivariable analysis, however, did not confirm PIK3CA mutation status as an independent prognostic marker for DRFS (HR, 0.92; P = .4012), with mutations being more frequent in low-risk breast cancers.
Conclusions:
- PIK3CA mutations are frequent in luminal breast cancer but do not independently predict outcomes with endocrine therapy.
- A complex relationship exists between PIK3CA mutations and low-risk breast cancer characteristics.
- While the PI3K/AKT pathway is a therapeutic target, PIK3CA mutations do not appear to influence residual risk after endocrine therapy.
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