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PMID: 18704160 Published · epublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Three SRA-domain methylcytosine-binding proteins cooperate to maintain global CpG methylation and epigenetic silencing in Arabidopsis.

PLoS genetics ·Vol. 4 ·No. 8 ·2008-08-15 ·页码 e1000156

Woo HR, Dittmer TA, Richards EJ

Abstract

Methylcytosine-binding proteins decipher the epigenetic information encoded by DNA methylation and provide a link between DNA methylation, modification of chromatin structure, and gene silencing. VARIANT IN METHYLATION 1 (VIM1) encodes an SRA (SET- and RING-associated) domain methylcytosine-binding protein in Arabidopsis thaliana, and loss of VIM1 function causes centromere DNA hypomethylation and centromeric heterochromatin decondensation in interphase. In the Arabidopsis genome, there are five VIM genes that share very high sequence similarity and encode proteins containing a PHD domain, two RING domains, and an SRA domain. To gain further insight into the function and potential redundancy among the VIM proteins, we investigated strains combining different vim mutations and transgenic vim knock-down lines that down-regulate multiple VIM family genes. The vim1 vim3 double mutant and the transgenic vim knock-down lines showed decreased DNA methylation primarily at CpG sites in genic regions, as well as repeated sequences in heterochromatic regions. In addition, transcriptional silencing was released in these plants at most heterochromatin regions examined. Interestingly, the vim1 vim3 mutant and vim knock-down lines gained ectopic CpHpH methylation in the 5S rRNA genes against a background of CpG hypomethylation. The vim1 vim2 vim3 triple mutant displayed abnormal morphological phenotypes including late flowering, which is associated with DNA hypomethylation of the 5' region of FWA and release of FWA gene silencing. Our findings demonstrate that VIM1, VIM2, and VIM3 have overlapping functions in maintenance of global CpG methylation and epigenetic transcriptional silencing.

MeSH 主题词
Arabidopsis/chemistry,genetics,metabolism Arabidopsis Proteins/chemistry,genetics,metabolism DNA (Cytosine-5-)-Methyltransferases/genetics,metabolism DNA Methylation DNA, Plant/genetics,metabolism DNA, Ribosomal/genetics,metabolism DNA-Binding Proteins/chemistry,genetics,metabolism Dinucleoside Phosphates/genetics,metabolism Gene Expression Gene Expression Regulation, Plant Gene Silencing Heterochromatin/genetics,metabolism Homeodomain Proteins/genetics,metabolism Multigene Family Mutation Protein Structure, Tertiary RNA, Ribosomal, 5S/genetics,metabolism Transcription Factors/genetics,metabolism
化学物质
Arabidopsis Proteins DNA, Plant DNA, Ribosomal DNA-Binding Proteins Dinucleoside Phosphates FWA protein, Arabidopsis Heterochromatin Homeodomain Proteins RNA, Ribosomal, 5S Transcription Factors VIM1 protein, Arabidopsis VIM2 protein, Arabidopsis VIM3 protein, Arabidopsis cytidylyl-3'-5'-guanosine MET1 protein, Arabidopsis DNA (Cytosine-5-)-Methyltransferases
作者与单位
共 3 位作者,点击展开单位 / ORCID
Woo Hye Ryun
Department of Biology, Washington University in St Louis, St Louis, Missouri, United States of America.
Dittmer Travis A
Richards Eric J
Article Info
Journal
PLoS genetics
Abbr.
PLoS Genet
ISSN
1553-7404
Published
2008-08-15
电子出版
2008-00-15
页码
e1000156
Language
English
Country/Region
United States
NLM ID
101239074
基金资助
NIGMS NIH HHS · R01 GM078256 · United States
NIGMS NIH HHS · R01GM078256 · United States
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