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Azacytidine-induced tumorigenesis of CHEF/18 cells: correlated DNA methylation and chromosome changes
Abstract:
5-Azacytidine (azaC), a drug that induces decreased methylation of DNA in mammalian cells, was shown previously to induce differentiation of mesenchymal cell types in CHEF/18 cells (Chinese hamster embryo fibroblasts). This paper describes the effectiveness of azaC in inducing tumorigenicity in CHEF/18 cells, previously shown to be nontumorigenic stable diploids. A short exposure of growing cells to 3 microM azaC induced tumor-forming ability in CHEF/18 stem cells. Pre-adipocyte clones and subclones derived from CHEF/18 by prior treatment with azaC were also found to be tumorigenic. Pre-adipocytes previously induced by insulin in the absence of azaC were mostly nontumorigenic, but one clone produced tumors and gave rise to both tumorigenic and nontumorigenic subclones. Karyotype analysis of 41 clones and subclones from azaC-induced and insulin-induced pre-adipocytes revealed a complete correlation between tumor-forming ability and the presence of trisomy for chromosome 3q. In addition, the tumorigenic and tumor-derived lines were demethylated at specific C-C-G-G sites in the preproinsulin, Ha-ras, and Ki-ras genes as revealed by blot hybridization to Msp I- and Hpa II-digested DNAs, whereas the nontumorigenic lines resembled the CHEF/18 controls. This three-way correlation between tumorigenicity, trisomy for 3q, and specific demethylation suggests that decreased DNA methylation may be involved both in differentiation and in tumorigenicity, and that azaC may induce chromosomal aberrations as well as altering DNA methylation.
Insights
5-Azacytidine (azaC) induces tumor formation in Chinese hamster embryo fibroblasts by decreasing DNA methylation and causing trisomy for chromosome 3q. This suggests a link between DNA demethylation, chromosomal changes, and tumorigenicity.
Area of Science:
- Cell Biology
- Epigenetics
- Cancer Research
Background:
- 5-Azacytidine (azaC) is known to decrease DNA methylation in mammalian cells.
- CHEF/18 cells (Chinese hamster embryo fibroblasts) are stable, nontumorigenic diploid cells.
- Previous studies showed azaC induces differentiation in mesenchymal cell types.
Purpose of the Study:
- To investigate the effectiveness of azaC in inducing tumorigenicity in CHEF/18 cells.
- To explore the relationship between DNA methylation, chromosomal aberrations, and tumor formation.
- To analyze the epigenetic and genetic changes associated with azaC-induced tumorigenesis.
Main Methods:
- Exposure of CHEF/18 cells to 3 microM azaC.
- Induction of pre-adipocyte clones using azaC and insulin.
- Karyotype analysis of cell clones and subclones.
- Blot hybridization of Msp I- and Hpa II-digested DNAs to detect DNA demethylation.
Main Results:
- Short exposure to azaC induced tumor-forming ability in CHEF/18 stem cells.
- AzaC-induced pre-adipocytes were tumorigenic; insulin-induced pre-adipocytes were mostly nontumorigenic.
- Tumorigenicity strongly correlated with trisomy for chromosome 3q.
- Tumorigenic lines showed demethylation at specific sites in preproinsulin, Ha-ras, and Ki-ras genes.
Conclusions:
- Decreased DNA methylation induced by azaC is linked to both cell differentiation and tumorigenicity.
- AzaC can induce chromosomal aberrations, specifically trisomy for 3q, contributing to tumor formation.
- The study highlights a three-way correlation between tumorigenicity, trisomy 3q, and specific DNA demethylation patterns.