Related Experiment Videos
Hypermethylation-mediated regulation of CD44 gene expression in human neuroblastoma
Pu Yan1, Annick Mühlethaler, Katia Balmas Bourloud
1Department of Pediatrics, University Hospital (CHUV), Lausanne, Switzerland.
Abstract:
The CD44 adhesion receptor is silenced in highly malignant neuroblastomas (NBs) with MYCN amplification. Because its functional expression is associated with decreased tumorigenic properties, CD44 behaves as a tumor suppressor gene in NB and other cancers. Given that the precise mechanisms responsible for CD44 silencing are not elucidated, we investigated whether CD44 expression could be regulated by DNA hypermethylation. The methylation status of CD44 gene promoter and exon 1 regions was analyzed in 12 NB cell lines and 21 clinical samples after bisulfite genomic modification, followed by PCR and single-strand conformation polymorphism analysis and genomic sequencing. The results showed that almost all CD44-negative cell lines displayed hypermethylation in both regions, whereas all CD44-expressing cell lines were unmethylated. These observations correlated with the ability to restore CD44 mRNA and protein expression by treatment of CD44-negative cells with the 5-aza-2'-deoxycytidine demethylating agent. In contrast, no CD44 gene hypermethylation could be detected in 21 NB clinical samples of different stages, irrespective of CD44 expression. Although our results suggest that aberrant methylation of promoter and exon 1 regions is involved in CD44 silencing in NB cell lines, they also indicate that methylation of unidentified regulatory sequences or methylation-independent mechanisms also control the expression of CD44 in primary NB tumors and cell lines. We therefore conclude that CD44 silencing is controlled by complex and tumor cell-specific processes, including gene hypermethylation. Further investigation of other mechanisms and genes involved in CD44 regulation will be needed before demethylation-mediated reactivation of the CD44 gene can be considered as therapeutic strategy for neuroblastoma and perhaps other related cancers.
Insights
CD44, a tumor suppressor gene, is silenced in neuroblastoma. DNA hypermethylation silences CD44 in cell lines, but not in tumors, suggesting complex regulation of this adhesion receptor.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- CD44 adhesion receptor is silenced in highly malignant neuroblastomas (NBs).
- CD44 functions as a tumor suppressor gene in NB and other cancers.
- Mechanisms of CD44 silencing are not fully understood.
Purpose of the Study:
- Investigate if DNA hypermethylation regulates CD44 expression in NB.
- Analyze CD44 promoter and exon 1 methylation in NB cell lines and clinical samples.
- Determine the role of DNA methylation in CD44 silencing.
Main Methods:
- Bisulfite genomic modification, PCR, and single-strand conformation polymorphism analysis.
- Genomic sequencing of CD44 promoter and exon 1 regions.
- Treatment with 5-aza-2'-deoxycytidine (a demethylating agent).
Main Results:
- CD44-negative NB cell lines showed hypermethylation in promoter and exon 1 regions.
- CD44-expressing NB cell lines were unmethylated.
- Demethylating agent restored CD44 expression in CD44-negative cells.
- No CD44 gene hypermethylation was detected in NB clinical samples.
Conclusions:
- Aberrant DNA methylation contributes to CD44 silencing in NB cell lines.
- Methylation-independent mechanisms or unidentified regulatory sequences control CD44 expression in primary NB tumors.
- CD44 silencing involves complex, tumor cell-specific processes.
- Further research is needed to explore other regulatory mechanisms for therapeutic strategies.