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Published on: February 28, 2019
Comprehensive Molecular Profiling of Sinonasal Teratocarcinosarcoma Highlights Recurrent SMARCA4 Inactivation and
Lisa M Rooper1,2, Abbas Agaimy3, Jeffrey Gagan4
1Departments of Pathology.
Abstract:
Sinonasal teratocarcinosarcoma (TCS) is a rare tumor defined by intermixed neuroepithelial, mesenchymal, and epithelial elements. While its etiology was historically ambiguous, we recently reported frequent SMARCA4 loss by immunohistochemistry, suggesting that TCS might be related to SMARCA4-deficient sinonasal carcinomas. However, other molecular alterations including CTNNB1 mutation have been reported in TCS, and its full genetic underpinnings are unclear. Here, we performed the first comprehensive molecular analysis of sinonasal TCS to better understand its pathogenesis and classification. We collected 30 TCS including 22 cases from our initial study. Immunohistochemical loss of SMARCA4 was seen in 22 cases (73%), with total loss in 18 cases (60%). β-catenin showed nuclear localization in 14 cases (64%) of the subset tested. We selected 17 TCS for next-generation sequencing with enrichment for partial or intact SMARCA4 immunoexpression. We identified inactivating SMARCA4 mutations in 11 cases (65%) and activating CTNNB1 mutations in 6 cases (35%), including 5 cases with both. Of 5 cases that lacked SMARCA4 or CTNNB1 mutation, 2 harbored other SWI/SNF complex and Wnt pathway alterations, including 1 with SMARCB1 inactivation and 1 with concomitant APC and ARID1A mutations, and 3 had other findings, including DICER1 hotspot mutation. These findings confirm that SMARCA4 inactivation is the dominant genetic event in sinonasal TCS with frequent simultaneous CTNNB1 mutations. They further underscore a possible relationship between TCS and sinonasal carcinomas with neuroendocrine/neuroectodermal differentiation. However, while SMARCA4 and β-catenin immunohistochemistry may help confirm a challenging diagnosis, TCS should not be regarded as a molecularly defined entity.
Insights
Sinonasal teratocarcinosarcoma (TCS) is often linked to SMARCA4 inactivation, a key genetic event. This rare tumor also frequently shows CTNNB1 mutations, impacting its classification.
Area of Science:
- Oncology
- Genetics
- Pathology
Background:
- Sinonasal teratocarcinosarcoma (TCS) is a rare tumor with mixed cell types.
- Its precise molecular origins and classification remain unclear.
- Previous studies suggested a link to SMARCA4-deficient carcinomas.
Purpose of the Study:
- To conduct the first comprehensive molecular analysis of sinonasal TCS.
- To elucidate the genetic underpinnings and pathogenesis of TCS.
- To clarify the classification of sinonasal teratocarcinosarcoma.
Main Methods:
- Analyzed 30 sinonasal TCS cases using immunohistochemistry and next-generation sequencing.
- Assessed SMARCA4 and β-catenin expression and mutations.
- Investigated other SWI/SNF complex and Wnt pathway alterations.
Main Results:
- SMARCA4 inactivation was identified in 65% of sequenced cases.
- CTNNB1 mutations were found in 35% of cases, with 5 cases showing both.
- Other SWI/SNF or Wnt pathway alterations were observed in a subset of cases.
Conclusions:
- SMARCA4 inactivation is the predominant genetic event in sinonasal TCS.
- Frequent co-occurring CTNNB1 mutations are noted.
- TCS is not a distinct molecular entity, though immunohistochemistry aids diagnosis.

