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Recurrent NMYC copy number gain and high protein expression in basal cell carcinoma
Kolja Freier1, Christa Flechtenmacher, Frauke Devens
1Abteilung Molekulare Genetik, Deutsches Krebsforschungszentrum, D-69120 Heidelberg, Germany.
Abstract:
Formation of basal cell carcinoma (BCC) has been linked to deregulation in the sonic hedgehogh (Shh) signalling pathway. Though mutations of the genes, PTCH1 and SMO, are known to be involved in aberrant Shh signalling, the distinct downstream effectors of these genes are poorly described. Studies have indicated that the NMYC oncogene is a potential Shh downstream effector. To assess the expression of Nmyc protein and gene copy numbers of the NMYC gene locus in a representative BCC tumour collection, immunohistochemistry (IHC) and fluorescence in situ hybridisation (FISH) were performed on 273 BCC specimens of different growth patterns and anatomic localisations on tissue microarray (TMA) sections. High Nmyc protein expression was detected in 72.7% (160/220) of all BCC specimens. Strong Nmyc immunopositivity was more frequently found in infiltrative BCCs compared to nodular/superficial BCCs (p=0.005), and in BCCs of the head compared to BCCs of other anatomic localisations (p=0.021). The prevalence of NMYC copy number gains was 17.5% (37/211), including three tumours with nodular differentiation that exhibited a distinct high-level amplification of the NMYC locus. These data indicate that high expression of the Shh downstream mediator, Nmyc, is a frequent event in BCC, predominantly in more aggressive subtypes. Although the NMYC copy number gain found in a subset of cases might contribute to this aberrant Nmyc protein expression by a gene dosage effect, our data suggests that Nmyc protein can also be induced by aberrant Shh signalling, acting as an effector molecule of the Shh pathway. Novel systemic anti-sense NMYC inhibition strategies could be a promising option for therapy-refractory BCC.
Insights
High Nmyc protein expression is frequent in basal cell carcinoma (BCC), particularly in aggressive subtypes. This suggests Nmyc is a key downstream effector of sonic hedgehog (Shh) signaling, offering potential therapeutic targets for BCC.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Basal cell carcinoma (BCC) formation is linked to sonic hedgehog (Shh) pathway deregulation.
- PTCH1 and SMO gene mutations are implicated, but downstream effectors remain unclear.
- NMYC oncogene is a potential downstream effector of Shh signaling.
Purpose of the Study:
- To assess Nmyc protein expression and NMYC gene copy number in BCC specimens.
- To investigate the correlation between Nmyc expression, BCC subtypes, and anatomic location.
- To elucidate Nmyc's role as a downstream effector in aberrant Shh signaling in BCC.
Main Methods:
- Immunohistochemistry (IHC) and fluorescence in situ hybridisation (FISH) were performed on 273 BCC specimens.
- Tissue microarray (TMA) sections were used for analysis.
- Analysis included different growth patterns and anatomic localisations.
Main Results:
- High Nmyc protein expression was detected in 72.7% of BCC specimens.
- Strong Nmyc expression was more frequent in infiltrative BCCs and those on the head.
- NMYC copy number gains occurred in 17.5% of cases, with high-level amplification in some nodular types.
Conclusions:
- High Nmyc expression is a common event in BCC, especially in aggressive subtypes.
- Aberrant Shh signaling likely induces Nmyc protein expression, acting as an effector.
- Targeting NMYC with anti-sense strategies may offer a promising therapeutic option for refractory BCC.
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