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Selective DNA demethylation by fusion of TDG with a sequence-specific DNA-binding domain
Authors:David J. Gregory  Lyudmila Mikhaylova  Alexey V. Fedulov
Affiliation:1.Department of Environmental Health; Harvard School of Public Health; Boston, MA USA;2.Pulmonary and Critical Care Medicine; Brigham and Women''s Hospital; Harvard Medical School; Boston, MA USA
Abstract:Our ability to selectively manipulate gene expression by epigenetic means is limited, as there is no approach for targeted reactivation of epigenetically silenced genes, in contrast to what is available for selective gene silencing. We aimed to develop a tool for selective transcriptional activation by DNA demethylation. Here we present evidence that direct targeting of thymine-DNA-glycosylase (TDG) to specific sequences in the DNA can result in local DNA demethylation at potential regulatory sequences and lead to enhanced gene induction. When TDG was fused to a well-characterized DNA-binding domain [the Rel-homology domain (RHD) of NFκB], we observed decreased DNA methylation and increased transcriptional response to unrelated stimulus of inducible nitric oxide synthase (NOS2). The effect was not seen for control genes lacking either RHD-binding sites or high levels of methylation, nor in control mock-transduced cells. Specific reactivation of epigenetically silenced genes may thus be achievable by this approach, which provides a broadly useful strategy to further our exploration of biological mechanisms and to improve control over the epigenome.
Keywords:demethylase   demethylation   DNA   gene function   TDG   transcriptional enhancement
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