Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.

In budding yeast, intragenic histone modification is linked with transcriptional elongation through the conserved regulator Paf1C. To investigate Paf1C-related function in higher eukaryotes, we analyzed the effects of loss of Paf1C on histone H3 density and patterns of H3 methylated at K4, K27, and...

Full description

Bibliographic Details
Main Authors: Sookyung Oh, Sunchung Park, Steven van Nocker
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-08-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC2515192?pdf=render
id doaj-bad8d87369a54c09b077d5f87de9e84a
record_format Article
spelling doaj-bad8d87369a54c09b077d5f87de9e84a2020-11-24T21:41:39ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042008-08-0148e100007710.1371/journal.pgen.1000077Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.Sookyung OhSunchung ParkSteven van NockerIn budding yeast, intragenic histone modification is linked with transcriptional elongation through the conserved regulator Paf1C. To investigate Paf1C-related function in higher eukaryotes, we analyzed the effects of loss of Paf1C on histone H3 density and patterns of H3 methylated at K4, K27, and K36 in Arabidopsis genes, and integrated this with existing gene expression data. Loss of Paf1C did not change global abundance of H3K4me3 or H3K36me2 within chromatin, but instead led to a 3' shift in the distribution of H3K4me3 and a 5' shift in the distribution of H3K36me2 within genes. We found that genes regulated by plant Paf1C showed strong enrichment for both H3K4me3 and H3K27me3 and also showed a high degree of tissue-specific expression. At the Paf1C- and PcG-regulated gene FLC, transcriptional silencing and loss of H3K4me3 and H3K36me2 were accompanied by expansion of H3K27me3 into the promoter and transcriptional start regions and further enrichment of H3K27me3 within the transcribed region. These results highlight both genic and global functions for plant Paf1C in histone modification and gene expression, and link transcriptional activity with cellular memory.http://europepmc.org/articles/PMC2515192?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sookyung Oh
Sunchung Park
Steven van Nocker
spellingShingle Sookyung Oh
Sunchung Park
Steven van Nocker
Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.
PLoS Genetics
author_facet Sookyung Oh
Sunchung Park
Steven van Nocker
author_sort Sookyung Oh
title Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.
title_short Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.
title_full Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.
title_fullStr Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.
title_full_unstemmed Genic and global functions for Paf1C in chromatin modification and gene expression in Arabidopsis.
title_sort genic and global functions for paf1c in chromatin modification and gene expression in arabidopsis.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2008-08-01
description In budding yeast, intragenic histone modification is linked with transcriptional elongation through the conserved regulator Paf1C. To investigate Paf1C-related function in higher eukaryotes, we analyzed the effects of loss of Paf1C on histone H3 density and patterns of H3 methylated at K4, K27, and K36 in Arabidopsis genes, and integrated this with existing gene expression data. Loss of Paf1C did not change global abundance of H3K4me3 or H3K36me2 within chromatin, but instead led to a 3' shift in the distribution of H3K4me3 and a 5' shift in the distribution of H3K36me2 within genes. We found that genes regulated by plant Paf1C showed strong enrichment for both H3K4me3 and H3K27me3 and also showed a high degree of tissue-specific expression. At the Paf1C- and PcG-regulated gene FLC, transcriptional silencing and loss of H3K4me3 and H3K36me2 were accompanied by expansion of H3K27me3 into the promoter and transcriptional start regions and further enrichment of H3K27me3 within the transcribed region. These results highlight both genic and global functions for plant Paf1C in histone modification and gene expression, and link transcriptional activity with cellular memory.
url http://europepmc.org/articles/PMC2515192?pdf=render
work_keys_str_mv AT sookyungoh genicandglobalfunctionsforpaf1cinchromatinmodificationandgeneexpressioninarabidopsis
AT sunchungpark genicandglobalfunctionsforpaf1cinchromatinmodificationandgeneexpressioninarabidopsis
AT stevenvannocker genicandglobalfunctionsforpaf1cinchromatinmodificationandgeneexpressioninarabidopsis
_version_ 1725920742096240640