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SWI/SNF-deficient thoraco-pulmonary neoplasms
Come Sesboue1, Francois Le Loarer2
1University of Bordeaux, Talence, France; Cancer center of Bordeaux, Bordeaux, France.
Abstract:
The SWI/SNF complexes are major regulators of gene expression and their alterations occur in a large array of cancers both of epithelial and mesenchymal lineages. Malignant rhabdoid tumors were the first malignancies linked to deregulation of these complexes with the involvement of SMARCB1 in their development but genetic alterations affect all subunits in other malignancies. In the chest and lung regions, SMARCA4 (BRG1) is the most frequently altered subunit and is involved in the pathogenesis of two subtypes of tumors, including bona fide carcinomas (SMARCA4-deficient non-small cell lung cancers) but also undifferentiated tumors that harbor an undifferentiated phenotype close to those of malignant rhabdoid tumors (SMARCA4-undifferentiated tumors). Although their histogenesis is yet to be fully understood, these tumors are associated with distinct clinical and pathological features even though some overlapping features have been reported in rare cases. SMARCA4 deficiency is easily asserted by immunohistochemistry that show the loss of nuclear expression of the protein in the nuclei of tumor cells. These tumors are commonly associated with high-grade cytological features, rhabdoid cytomorphology, solid architecture and extensive necrosis. The typical immunohistochemical signature of SMARCA4-UT combines co-inactivation of SMARCA2 (BRM) and the overexpression of SOX2 and SALL4. No specific therapeutic strategies have been so far developed for SMARCA4-deficient neoplasms. SMARCB1 subunit is involved in the development of several SMARCB1-deficient sarcomas on top of malignant rhabdoid tumors that may develop in the thorax. Malignant rhabdoid tumors affect mostly children of less than 5y. The differential diagnosis includes epithelioid sarcomas, malignant myoepithelial tumors or myoepithelial carcinomas, extra-skeletal myxoid chondrosarcomas and synovial sarcomas.
Insights
Alterations in SWI/SNF complexes, particularly SMARCA4, drive various cancers, including lung tumors. SMARCA4 deficiency, identified by immunohistochemistry, characterizes aggressive neoplasms lacking targeted therapies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- SWI/SNF complexes are crucial gene expression regulators implicated in diverse cancers.
- Malignant rhabdoid tumors were initially linked to SMARCB1 deregulation; however, other subunits are affected in various malignancies.
- SMARCA4 alterations are frequent in thoracic cancers, leading to SMARCA4-deficient non-small cell lung cancers and SMARCA4-undifferentiated tumors.
Purpose of the Study:
- To investigate the role of SWI/SNF complex alterations, specifically SMARCA4, in thoracic malignancies.
- To characterize the clinical and pathological features of SMARCA4-deficient tumors.
- To highlight diagnostic methods and the current lack of targeted therapies.
Main Methods:
- Immunohistochemistry to detect SMARCA4 protein loss.
- Analysis of tumor cytological features, morphology, architecture, and necrosis.
- Evaluation of co-inactivation of SMARCA2 and overexpression of SOX2 and SALL4 in SMARCA4-undifferentiated tumors.
Main Results:
- SMARCA4 deficiency is a hallmark of specific lung cancers and undifferentiated tumors with rhabdoid features.
- These tumors exhibit high-grade cytology, rhabdoid morphology, solid architecture, and extensive necrosis.
- Diagnostic markers include loss of nuclear SMARCA4, co-inactivation of SMARCA2, and overexpression of SOX2 and SALL4.
Conclusions:
- SMARCA4 deficiency defines distinct aggressive neoplasms in the chest and lung regions.
- Immunohistochemistry is effective for diagnosing SMARCA4-deficient tumors.
- Currently, no specific therapeutic strategies exist for these SMARCA4-deficient neoplasms, underscoring a critical unmet need.
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