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Published on: June 7, 2019
Oncogenic PIK3CA mutations occur in epidermal nevi and seborrheic keratoses with a characteristic mutation pattern
Christian Hafner1, Elena López-Knowles, Nuno M Luis
1Department of Dermatology, University of Regensburg, 93042 Regensburg, Germany.
Abstract:
Activating mutations of the p110 alpha subunit of PI3K (PIK3CA) oncogene have been identified in a broad spectrum of malignant tumors. However, their role in benign or preneoplastic conditions is unknown. Activating FGF receptor 3 (FGFR3) mutations are common in benign skin lesions, either as embryonic mutations in epidermal nevi (EN) or as somatic mutations in seborrheic keratoses (SK). FGFR3 mutations are also common in low-grade malignant bladder tumors, where they often occur in association with PIK3CA mutations. Therefore, we examined exons 9 and 20 of PIK3CA and FGFR3 hotspot mutations in EN (n = 33) and SK (n = 62), two proliferative skin lesions lacking malignant potential. Nine of 33 (27%) EN harbored PIK3CA mutations; all cases showed the E545G substitution, which is uncommon in cancers. In EN, R248C was the only FGFR3 mutation identified. By contrast, 10 of 62 (16%) SK revealed the typical cancer-associated PIK3CA mutations E542K, E545K, and H1047R. The same lesions displayed a wide range of FGFR3 mutations. Corresponding unaffected tissue was available for four EN and two mutant SK: all control samples displayed a WT sequence, confirming the somatic nature of the mutations found in lesional tissue. Forty of 95 (42%) lesions showed at least one mutation in either gene. PIK3CA and FGFR3 mutations displayed an independent distribution; 5/95 lesions harbored mutations in both genes. Our findings suggest that, in addition to their role in cancer, oncogenic PIK3CA mutations contribute to the pathogenesis of skin tumors lacking malignant potential. The remarkable genotype-phenotype correlation as observed in this study points to a distinct etiopathogenesis of the mutations in keratinocytes occuring either during fetal development or in adult life.
Insights
Activating mutations in PIK3CA and FGFR3 genes are found in benign skin tumors like epidermal nevi and seborrheic keratoses, suggesting a role in non-malignant skin lesion development.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Activating mutations in PIK3CA are common in cancers.
- FGFR3 mutations are prevalent in benign skin lesions and bladder tumors.
- The role of these mutations in non-malignant skin conditions was previously unknown.
Purpose of the Study:
- To investigate the presence and spectrum of PIK3CA and FGFR3 hotspot mutations in epidermal nevi (EN) and seborrheic keratoses (SK).
- To determine if these mutations contribute to the pathogenesis of proliferative skin lesions lacking malignant potential.
Main Methods:
- Genomic DNA was extracted from 33 EN and 62 SK samples.
- Exons 9 and 20 of PIK3CA and hotspot regions of FGFR3 were analyzed for mutations using PCR and sequencing.
- Unaffected control tissue was analyzed for somatic mutation confirmation.
Main Results:
- 27% of EN harbored PIK3CA mutations (predominantly E545G) and FGFR3 mutations (R248C).
- 16% of SK showed common cancer-associated PIK3CA mutations (E542K, E545K, H1047R) and various FGFR3 mutations.
- 42% of all lesions analyzed had mutations in either PIK3CA or FGFR3, with independent distribution.
Conclusions:
- Oncogenic PIK3CA mutations contribute to the pathogenesis of skin tumors that lack malignant potential.
- The findings highlight a distinct etiopathogenesis for these mutations in keratinocytes during development or adulthood.
- A genotype-phenotype correlation was observed, linking specific mutations to distinct skin lesion types.
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