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DNA methylation and gene expression: endogenous retroviral genome becomes infectious after molecular cloning

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.

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