Abstract
Cytosine DNA methylation is considered to be a stable epigenetic mark, but active demethylation has been observed in both plants and animals. In Arabidopsis thaliana, DNA glycosylases of the DEMETER (DME) family remove methylcytosines from DNA. Demethylation by DME is necessary for genomic imprinting, and demethylation by a related protein, REPRESSOR OF SILENCING1, prevents gene silencing in a transgenic background. However, the extent and function of demethylation by DEMETER-LIKE (DML) proteins in WT plants is not known. Using genome-tiling microarrays, we mapped DNA methylation in mutant and WT plants and identified 179 loci actively demethylated by DML enzymes. Mutations in DML genes lead to locus-specific DNA hypermethylation. Reintroducing WT DML genes restores most loci to the normal pattern of methylation, although at some loci, hypermethylated epialleles persist. Of loci demethylated by DML enzymes, >80% are near or overlap genes. Genic demethylation by DML enzymes primarily occurs at the 5' and 3' ends, a pattern opposite to the overall distribution of WT DNA methylation. Our results show that demethylation by DML DNA glycosylases edits the patterns of DNA methylation within the Arabidopsis genome to protect genes from potentially deleterious methylation.
MeSH Terms
5-Methylcytosine/metabolism
Arabidopsis/enzymology,genetics
Arabidopsis Proteins/genetics
DNA Glycosylases/genetics
DNA Methylation
DNA, Plant/metabolism
Genetic Markers
Genome, Plant
Genomic Imprinting
N-Glycosyl Hydrolases/genetics
Trans-Activators/genetics
Chemicals
Arabidopsis Proteins
DNA, Plant
Genetic Markers
Trans-Activators
5-Methylcytosine
DEMETER protein, Arabidopsis
DML2 protein, Arabidopsis
DML3 protein, Arabidopsis
DNA Glycosylases
N-Glycosyl Hydrolases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Penterman Jon
Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720, USA.
Zilberman Daniel
Huh Jin Hoe
Ballinger Tracy
Henikoff Steven
Fischer Robert L
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