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DNA methylation and gene expression: endogenous retroviral genome becomes infectious after molecular cloning
Abstract:
The Mov-3 substrain of mice carries Moloney murine leukemia virus as a Mendelian gene in its germ line. All mice segregating the Mov-3 locus activate virus and develop viremia and leukemia. The integrated provirus (i.e., Mov-3 locus) was molecularly cloned from Mov-3 liver DNA as a 16.8 kilobase long EcoRI fragment. Comparison of the cloned and genomic Mov-3 specific EcoRI fragment by restriction enzyme analysis showed no differences in the size of the fragments, indicating that no major sequence rearrangements occurred during cloning. The genomic and cloned Mov-3 DNAs were compared for methylation and infectivity. Analysis with Hha I showed that the genomic proviral and the flanking mouse sequences were methylated at cytosine residues, in contrast to the cloned Mov-3 locus. The cloned Mov-3 locus, however, was highly infectious in a transfection assay (1 x 10(-3) plaque-forming unit per viral genome) in contrast to the genomic Mov-3 DNA (less than 10(-7) per viral genome). Our results suggest that genes containing 5-methylcytosine are not expressed after transfection into susceptible cells and that removal of the methyl groups by molecular cloning in prokaryotes leads to expression generating infectious proviral DNA. If gene expression of transfected DNA is controlled by mechanisms that are relevant for gene expression in the animal, this suggests that DNA methylation may play a causative role in eukaryotic gene regulation.
Insights
DNA methylation in mice may cause gene silencing. Molecular cloning removed methyl groups, restoring Moloney murine leukemia virus (Mov-3) gene expression and infectivity, suggesting a role in eukaryotic gene regulation.
Area of Science:
- Molecular Biology
- Virology
- Genetics
Background:
- The Mov-3 mouse substrain harbors Moloney murine leukemia virus (MMLV) integrated into its germline as a Mendelian gene.
- Mice with the Mov-3 locus exhibit spontaneous virus activation, viremia, and leukemia development.
Purpose of the Study:
- To investigate the role of DNA methylation in the expression of the integrated Moloney murine leukemia virus (Mov-3) provirus.
- To compare the infectivity and methylation status of cloned versus genomic Mov-3 DNA.
Main Methods:
- Molecular cloning of the integrated Mov-3 provirus from mouse liver DNA.
- Restriction enzyme analysis to assess sequence integrity post-cloning.
- DNA methylation analysis using Hha I restriction enzyme.
- Transfection assays to determine viral infectivity of genomic and cloned DNA.
Main Results:
- The cloned Mov-3 provirus showed no major sequence rearrangements compared to genomic DNA.
- Genomic Mov-3 DNA and flanking sequences were methylated, while the cloned locus was unmethylated.
- Cloned Mov-3 DNA exhibited significantly higher infectivity in transfection assays compared to genomic DNA.
Conclusions:
- DNA methylation, specifically 5-methylcytosine, is associated with the lack of expression of transfected genes.
- Demethylation through molecular cloning in prokaryotes restores proviral DNA expression and infectivity.
- DNA methylation may play a critical role in regulating eukaryotic gene expression.