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Published on: December 30, 2025
Tumor suppressor PTEN in breast cancer: heterozygosity, mutations and protein expression
Petros Kechagioglou1, Rigini M Papi, Xeni Provatopoulou
1Laboratory of Biochemistry, Department of Chemistry Aristotle University of Thessaloniki, Thessaloniki Greece. kyr@chem.auth.gr.
Abstract:
Phosphatase and tensin homolog deleted on chromosome ten (PTEN) is one of the most frequently mutated human tumor suppressor genes, implicated in cell growth and survival and suppressing tumor formation. Loss of PTEN activity, either at the protein or genomic level, has been related to many primary and metastatic malignancies including breast cancer. The present study investigates the heterozygosity, mutation spectrum and protein expression of PTEN in 43 patients with breast cancer or precursor lesions of the breast and 10 healthy individuals. Microsatellite analysis at the PTEN locus using D10S215, D10S541 and D10S579 markers indicated that the observed heterozygosity (Ho) is lower than the expected heterozygosity (Hs) in benign and malignant breast disease. Mutational analysis in exons 1, 5, 7 and 9 of the PTEN gene revealed several mutations, most of which cause truncation of the PTEN protein and consequently loss of activity. Increased circulating levels of PTEN and phosphorylated PTEN protein were also observed by immunostaining in patients with breast cancer and precursor breast lesions. In support, increased PTEN protein expression was detected in corresponding tissue specimens. Our data suggest an association between breast cancer and PTEN mutations, resulting in the production of truncated forms of the corresponding protein, thus indicating that breast carcinogenesis is potentially related to PTEN loss of activity rather than loss of expression. Peripheral blood sampling may provide an advantageous application for the determination of PTEN gene mutations and its protein expression in human cancer.
Insights
Mutations in the PTEN tumor suppressor gene are linked to breast cancer. These PTEN mutations often lead to truncated proteins, suggesting loss of activity drives breast carcinogenesis.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Phosphatase and tensin homolog deleted on chromosome ten (PTEN) is a critical tumor suppressor gene frequently altered in human cancers.
- Loss of PTEN function is associated with various malignancies, including breast cancer, impacting cell growth, survival, and tumor suppression.
Purpose of the Study:
- To investigate PTEN gene heterozygosity, mutation spectrum, and protein expression in breast cancer patients and healthy individuals.
- To determine the relationship between PTEN alterations and breast carcinogenesis.
Main Methods:
- Microsatellite analysis at the PTEN locus (D10S215, D10S541, D10S579) to assess heterozygosity.
- Mutational analysis of PTEN exons 1, 5, 7, and 9.
- Immunostaining to evaluate PTEN and phosphorylated PTEN protein levels in circulation and tissue specimens.
Main Results:
- Observed heterozygosity (Ho) for PTEN was lower than expected (Hs) in benign and malignant breast disease.
- Several PTEN mutations were identified, frequently resulting in protein truncation and loss of activity.
- Elevated circulating and tissue levels of PTEN and phosphorylated PTEN were observed in breast cancer patients.
Conclusions:
- Breast carcinogenesis is potentially linked to PTEN loss of activity due to mutations, rather than solely loss of expression.
- Peripheral blood analysis may offer a valuable method for detecting PTEN gene mutations and protein expression in cancer patients.
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