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Regulation of heterochromatic DNA replication by histone H3 lysine 27 methyltransferases


ABSTRACT: Multiple pathways prevent DNA replication from occurring more than once per cell cycle. These pathways block re-replication by strictly controlling the activity of pre-replication complexes, which assemble at specific sites in the genome called origins. Here we show that mutations in the homologous histone 3 lysine 27 (H3K27) monomethyltransferases, ARABIDOPSIS TRITHORAX-RELATED PROTEIN5 (ATXR5) and ATXR6, lead to re-replication of specific genomic locations.   The vast majority of these locations correspond to transposons and other repetitive and silent elements of the Arabidopsis genome.  These sites also correspond to high levels of H3K27 monomethylation, and mutation of the catalytic SET domain is sufficient to cause the re-replication defect.  Mutation of ATXR5 and ATXR6 also causes upregulation of transposon expression and has pleiotropic effects on plant development.  These results uncover a novel pathway that prevents over-replication of heterochromatin in Arabidopsis.  Examination of genomic DNA content in endoreduplicating nuclei in wild type and atxr atxr6 mutant plants

ORGANISM(S): Arabidopsis thaliana

SUBMITTER: Hume Stroud 

PROVIDER: E-GEOD-22411 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Regulation of heterochromatic DNA replication by histone H3 lysine 27 methyltransferases.

Jacob Yannick Y   Stroud Hume H   Leblanc Chantal C   Feng Suhua S   Zhuo Luting L   Caro Elena E   Hassel Christiane C   Gutierrez Crisanto C   Michaels Scott D SD   Jacobsen Steven E SE  

Nature 20100714 7309


Multiple pathways prevent DNA replication from occurring more than once per cell cycle. These pathways block re-replication by strictly controlling the activity of pre-replication complexes, which assemble at specific sites in the genome called origins. Here we show that mutations in the homologous histone 3 lysine 27 (H3K27) monomethyltransferases, ARABIDOPSIS TRITHORAX-RELATED PROTEIN5 (ATXR5) and ATXR6, lead to re-replication of specific genomic locations. Most of these locations correspond t  ...[more]

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