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Recurrent Loss of SMARCA4 in Sinonasal Teratocarcinosarcoma
Lisa M Rooper1, Nasir Uddin2, Jeffrey Gagan3
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, MD.
Abstract:
Molecular analysis has reshaped the landscape of high grade sinonasal tumors by defining novel entities and identifying recurrent mutations in established tumor types. However, sinonasal teratocarcinosarcoma (TCS), a rare and aggressive tumor with intermixed teratomatous, carcinomatous, and sarcomatous elements, remains poorly understood. The multiphenotypic differentiation of TCS has engendered persistent controversy about its histogenesis and leads to diagnostic overlap with several other malignancies. In this study, we evaluated the molecular underpinnings of TCS to clarify its pathogenesis and diagnosis. We performed SMARCA4 immunohistochemistry (IHC) on 22 TCS and 153 other sinonasal tumors. We identified loss of SMARCA4 expression in 18 TCS (82%), including 15 (68%) with complete loss and 3 (14%) with partial loss. Although we also identified partial SMARCA4 loss in 1 of 8 SMARCB1-deficient sinonasal carcinomas (13%), SMARCA4 was intact in all other sinonasal carcinomas and neuroendocrine tumors. We then selected 3 TCS with complete SMARCA4 loss by IHC for a targeted next-generation sequencing panel that included 1425 cancer-related genes. We confirmed biallelic somatic inactivation of SMARCA4 without other known oncogenic mutations in these 3 cases. Overall, these findings suggest that SMARCA4 inactivation may be the dominant genetic event in TCS, expanding understanding of this gene's role in sinonasal tumorigenesis. They also raise the possibility that TCS is on a diagnostic spectrum with the newly described SMARCA4-deficient sinonasal carcinoma, blurring the lines between established and emerging sinonasal entities. In addition, SMARCA4 IHC may provide a useful adjunct for confirming a diagnosis of TCS in limited material.
Insights
SMARCA4 gene inactivation is a key driver in sinonasal teratocarcinosarcoma (TCS), a rare cancer. This finding helps clarify TCS diagnosis and its relationship with SMARCA4-deficient sinonasal carcinoma.
Area of Science:
- Oncology
- Genetics
- Pathology
Background:
- High-grade sinonasal tumors are increasingly understood through molecular analysis, yet sinonasal teratocarcinosarcoma (TCS) remains poorly characterized.
- The complex differentiation of TCS leads to diagnostic challenges and controversy regarding its origin.
- Understanding the molecular basis of TCS is crucial for accurate diagnosis and treatment.
Purpose of the Study:
- To investigate the molecular alterations underlying sinonasal teratocarcinosarcoma (TCS).
- To clarify the pathogenesis and diagnostic criteria for TCS.
- To explore the potential role of SMARCA4 in TCS development.
Main Methods:
- SMARCA4 immunohistochemistry (IHC) was performed on 22 TCS and 153 other sinonasal tumors.
- Targeted next-generation sequencing was conducted on 3 TCS cases with complete SMARCA4 loss.
- Analysis focused on identifying genetic alterations, particularly in SMARCA4.
Main Results:
- Loss of SMARCA4 expression was observed in 82% of TCS cases (18/22).
- Complete SMARCA4 loss was found in 68% of TCS cases (15/22).
- Targeted sequencing confirmed biallelic somatic inactivation of SMARCA4 as the primary genetic event in 3 TCS cases, with no other significant oncogenic mutations detected.
Conclusions:
- SMARCA4 inactivation is likely the dominant genetic event in sinonasal teratocarcinosarcoma (TCS).
- These findings suggest TCS may be part of a diagnostic spectrum with SMARCA4-deficient sinonasal carcinoma.
- SMARCA4 IHC can serve as a valuable diagnostic tool for TCS, especially in limited tissue samples.
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