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Quantitative Immunohistochemistry of the Cellular Microenvironment in Patient Glioblastoma Resections
Published on: July 31, 2017
Aberrant methylation and down-regulation of TMS1/ASC in human glioblastoma
Annalisa R Stone1, William Bobo, Daniel J Brat
1Department of Radiation Oncology, Winship Cancer Institute, Emory University School of Medicine, 1365-C Clifton Rd., NE, Atlanta, GA 30322, USA.
Abstract:
TMS1/ASC is an intracellular signaling molecule with proposed roles in the regulation of apoptosis, nuclear factor-kappaB activation, and cytokine maturation. Previous studies have shown that TMS1/ASC is silenced by epigenetic means in human breast tumors. In this study, we examined methylation and expression of TMS1/ASC in glioblastoma multiforme (GBM). Whereas normal brain tissue was unmethylated at the TMS1 locus and expressed TMS1 message, 11 of 23 human GBM cell lines exhibited reduced or absent expression of TMS1 that was associated with aberrant methylation of a CpG island in the promoter of the TMS1 gene. Quantitative analysis showed that there was an inverse correlation between the degree of methylation and level of TMS1 expression. Treatment of GBM cell lines lacking TMS1 expression with the methyltransferase inhibitor 5-aza-2'deoxycytidine resulted in partial demethylation and re-expression of TMS1. Analysis of primary tissues indicated that the TMS1 gene is unmethylated and expressed in normal brain, where its expression is restricted to astrocytes. In contrast, TMS1 was aberrantly methylated in 43% (10 of 23) primary GBM specimens. Tumors that exhibited aberrant methylation of TMS1 generally expressed reduced or absent expression of TMS1 as compared to unmethylated cases. Methylation of TMS1 was not associated with patient age, gender, or treatment status. Although the relationship did not reach statistical significance, there was a trend toward increased overall survival for patients with unmethylated tumors. For one patient, disease progression from astrocytic astrocytoma (World Health Organization grade III) to GBM (World Health Organization grade IV) was associated with selective expansion of TMS1-negative cells. The data suggest a role for the epigenetic silencing of TMS1 in the pathogenesis of human GBM. Methylation of TMS1 may prove to be a useful prognostic marker and/or predictor of patient survival and tumor malignancy.
Insights
Epigenetic silencing of TMS1/ASC, a key signaling molecule, is linked to glioblastoma multiforme (GBM) development. Aberrant methylation of the TMS1 gene in GBM tumors correlates with reduced expression and may serve as a prognostic marker.
Area of Science:
- Neuroscience
- Molecular Biology
- Oncology
Background:
- TMS1/ASC is an intracellular signaling molecule involved in apoptosis, NF-κB activation, and cytokine maturation.
- Previous research indicated epigenetic silencing of TMS1/ASC in human breast tumors.
- Glioblastoma multiforme (GBM) is an aggressive brain tumor with complex molecular underpinnings.
Purpose of the Study:
- To investigate the methylation status and expression of the TMS1/ASC gene in glioblastoma multiforme (GBM).
- To determine the correlation between TMS1/ASC methylation and its expression levels in GBM.
- To explore the potential role of TMS1/ASC epigenetic silencing in GBM pathogenesis and its utility as a prognostic marker.
Main Methods:
- Analysis of TMS1/ASC promoter methylation and gene expression in human GBM cell lines and primary tumor specimens.
- Treatment of GBM cell lines with 5-aza-2'-deoxycytidine, a methyltransferase inhibitor, to assess demethylation and re-expression.
- Quantitative analysis of methylation levels and correlation with TMS1/ASC expression.
Main Results:
- Normal brain tissue showed unmethylated TMS1 and expressed TMS1, primarily in astrocytes.
- Aberrant methylation of the TMS1 promoter was observed in 43% of primary GBM specimens and 11 of 23 GBM cell lines, correlating with reduced or absent TMS1 expression.
- Treatment with 5-aza-2'-deoxycytidine induced TMS1 re-expression in silenced GBM cells.
- A trend toward increased overall survival was observed in patients with unmethylated TMS1 tumors.
- Disease progression from astrocytic astrocytoma to GBM was associated with the expansion of TMS1-negative cells.
Conclusions:
- Epigenetic silencing of TMS1/ASC through promoter methylation plays a significant role in the pathogenesis of human GBM.
- Aberrant TMS1 methylation is a frequent event in GBM and is inversely correlated with gene expression.
- TMS1 methylation status may serve as a valuable prognostic marker for patient survival and tumor malignancy in GBM.
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