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SMARCB1 Loss in Poorly Differentiated Chordomas Drives Tumor Progression
Tara A Walhart1, Bryanna Vacca2, Austin J Hepperla1
1Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina.
Abstract:
Poorly differentiated (PD) chordoma, a rare, aggressive tumor originating from notochordal tissue, shows loss of SMARCB1 expression, a core component of the Switch/Sucrose Non-Fermentable (SWI/SNF) chromatin remodeling complexes. To determine the impact of SMARCB1 re-expression on cell growth and gene expression, two SMARCB1-negative PD chordoma cell lines with an inducible SMARCB1 expression system were generated. After 72 hours of induction of SMARCB1, both SMARCB1-negative PD chordoma cell lines continued to proliferate. This result contrasted with those observed with SMARCB1-negative rhabdoid cell lines in which SMARCB1 re-expression caused the rapid inhibition of growth. We found that the lack of growth inhibition may arise from the loss of CDKN2A (p16INK4A) expression in PD chordoma cell lines. RNA-sequencing of cell lines after SMARCB1 re-expression showed a down-regulation for rRNA and RNA processing as well as metabolic processing and increased expression of genes involved in cell adhesion, cell migration, and development. Taken together, these data establish that SMARCB1 re-expression in PD chordomas alters the repertoire of SWI/SNF complexes, perhaps restoring those associated with cellular differentiation. These novel findings support a model in which SMARCB1 inactivation blocks the conversion of growth-promoting SWI/SNF complexes to differentiation-inducing ones, and they implicate SMARCB1 loss as a late event in tumorigenic progression. Importantly, the absence of growth inhibition after SMARCB1 restoration creates a unique opportunity to identify therapeutic vulnerabilities.
Insights
Loss of SMARCB1 in poorly differentiated chordoma does not inhibit cell growth upon re-expression, unlike in other cancers. This suggests SMARCB1 loss is a late event, offering unique therapeutic targets for aggressive chordoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Poorly differentiated chordoma (PD) is a rare, aggressive tumor characterized by loss of SMARCB1.
- SMARCB1 is a key component of SWI/SNF chromatin remodeling complexes.
Purpose of the Study:
- To investigate the effects of SMARCB1 re-expression on cell growth and gene expression in PD chordoma.
- To understand the role of SMARCB1 in chordoma tumorigenesis and identify potential therapeutic vulnerabilities.
Main Methods:
- Generated two SMARCB1-negative PD chordoma cell lines with inducible SMARCB1 expression.
- Analyzed cell proliferation and gene expression using RNA-sequencing after SMARCB1 induction.
Main Results:
- SMARCB1 re-expression did not inhibit proliferation in PD chordoma cell lines, contrasting with rhabdoid tumors.
- Lack of growth inhibition correlated with CDKN2A (p16INK4A) loss in PD chordoma.
- RNA-sequencing revealed altered gene expression, including down-regulation of RNA processing and metabolic genes, and up-regulation of cell adhesion and migration genes.
Conclusions:
- SMARCB1 re-expression in PD chordoma alters SWI/SNF complexes, potentially restoring differentiation pathways.
- SMARCB1 inactivation appears to be a late event in chordoma progression.
- The absence of growth inhibition upon SMARCB1 restoration presents a therapeutic opportunity.
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