RNA-directed DNA methylation in plants
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Ali Movahedi | Qiang Zhuge | Tongming Yin | T. Yin | Q. Zhuge | A. Movahedi | Jia-xin Zhang | Weibu Sun | Jiaxin Zhang | Xiaolong Wu | Mohaddesseh Mousavi | Kourosh Mohammadi | Xiaolong Wu | Kourosh Mohammadi | Weibu Sun | Mohaddesseh Mousavi
[1] A. Wierzbicki,et al. Independent Chromatin Binding of ARGONAUTE4 and SPT5L/KTF1 Mediates Transcriptional Gene Silencing , 2011, PLoS genetics.
[2] Hailing Jin,et al. An RNA polymerase II- and AGO4-associated protein acts in RNA-directed DNA methylation , 2010, Nature.
[3] M. Matzke,et al. HDA6, a putative histone deacetylase needed to enhance DNA methylation induced by double‐stranded RNA , 2002, The EMBO journal.
[4] M. Matzke,et al. Involvement of a GHKL ATPase in RNA-Directed DNA Methylation in Arabidopsis thaliana , 2012, Current Biology.
[5] D. Baulcombe,et al. Arabidopsis ARGONAUTE1 is an RNA Slicer that selectively recruits microRNAs and short interfering RNAs. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[6] David P. Kreil,et al. RNA‐directed DNA methylation and plant development require an IWR1‐type transcription factor , 2010, EMBO reports.
[7] Thomas R. Bürglin,et al. A Comprehensive Classification and Evolutionary Analysis of Plant Homeobox Genes , 2009, Molecular biology and evolution.
[8] J. Bender,et al. H3 Lysine 9 Methylation Is Maintained on a Transcribed Inverted Repeat by Combined Action of SUVH6 and SUVH4 Methyltransferases , 2005, Molecular and Cellular Biology.
[9] S. Lerbs-Mache,et al. Reinforcement of silencing at transposons and highly repeated sequences requires the concerted action of two distinct RNA polymerases IV in Arabidopsis. , 2005, Genes & development.
[10] Robert A. Martienssen,et al. Noncoding RNAs and Gene Silencing , 2007, Cell.
[11] Homeodomain-type DNA recognition. , 1996, Progress in biophysics and molecular biology.
[12]
C. Pikaard,et al.
Rna-directed Dna Methylation Dependent − a Transcription Fork Model for Pol Iv and Pol V P ,
2013
.
[13]
S. Grewal,et al.
Transcription and RNA interference in the formation of heterochromatin
,
2007,
Nature.
[14]
T. Mockler,et al.
IDN 1 and IDN 2 are required for de novo DNA methylation in Arabidopsis thaliana
,
2009
.
[15]
A. Wierzbicki,et al.
A SWI/SNF Chromatin-Remodeling Complex Acts in Noncoding RNA-Mediated Transcriptional Silencing
,
2013,
Molecular cell.
[16]
C. Pikaard,et al.
Evolutionary history of plant multisubunit RNA polymerases IV and V: subunit origins via genome-wide and segmental gene duplications, retrotransposition, and lineage-specific subfunctionalization.
,
2010,
Cold Spring Harbor symposia on quantitative biology.
[17]
Kun Dou,et al.
The splicing machinery promotes RNA‐directed DNA methylation and transcriptional silencing in Arabidopsis
,
2013,
The EMBO journal.
[18]
Julie A. Law,et al.
SHH1, a Homeodomain Protein Required for DNA Methylation, As Well As RDR2, RDM4, and Chromatin Remodeling Factors, Associate with RNA Polymerase IV
,
2011,
PLoS genetics.
[19]
Julie A. Law,et al.
A Protein Complex Required for Polymerase V Transcripts and RNA- Directed DNA Methylation in Arabidopsis
,
2010,
Current Biology.
[20]
E. Bucher,et al.
MOM1 and Pol‐IV/V interactions regulate the intensity and specificity of transcriptional gene silencing
,
2010,
The EMBO journal.
[21]
I. Henderson,et al.
The SRA Methyl-Cytosine-Binding Domain Links DNA and Histone Methylation
,
2007,
Current Biology.
[22]
N. Fedoroff,et al.
Dynamic Regulation of ARGONAUTE4 within Multiple Nuclear Bodies in Arabidopsis thaliana
,
2008,
PLoS genetics.
[23]
A. Murzin,et al.
Structure of the Chromo Barrel Domain from the MOF Acetyltransferase*
,
2005,
Journal of Biological Chemistry.
[24]
Wei Chen,et al.
A Pre-mRNA-Splicing Factor Is Required for RNA-Directed DNA Methylation in Arabidopsis
,
2013,
PLoS genetics.
[25]
Jianhua Zhu,et al.
A conserved transcriptional regulator is required for RNA-directed DNA methylation and plant development.
,
2009,
Genes & development.
[26]
Jian‐Kang Zhu,et al.
RNA Splicing Factors and RNA-Directed DNA Methylation
,
2014,
Biology.
[27]
Nadav S. Bar,et al.
Landscape of transcription in human cells
,
2012,
Nature.
[28]
David P. Kreil,et al.
Involvement of Putative SNF2 Chromatin Remodeling Protein DRD1 in RNA-Directed DNA Methylation
,
2004,
Current Biology.
[29]
Jianhua Zhu,et al.
NRPD4, a protein related to the RPB4 subunit of RNA polymerase II, is a component of RNA polymerases IV and V and is required for RNA-directed DNA methylation.
,
2009,
Genes & development.
[30]
Robert A. Martienssen,et al.
RNA interference in the nucleus: roles for small RNAs in transcription, epigenetics and beyond
,
2013,
Nature Reviews Genetics.
[31]
Jun Ma,et al.
DTF1 is a core component of RNA-directed DNA methylation and may assist in the recruitment of Pol IV
,
2013,
Proceedings of the National Academy of Sciences.
[32]
J. Bender,et al.
Locus-Specific Control of DNA Methylation by the Arabidopsis SUVH5 Histone Methyltransferase[W]
,
2006,
The Plant Cell Online.
[33]
Jianjun Zhu,et al.
Control of DNA methylation and heterochromatic silencing by histone H2B deubiquitination
,
2007,
Nature.
[34]
Songtao Jia,et al.
RNAi-Mediated Targeting of Heterochromatin by the RITS Complex
,
2004,
Science.
[35]
Jian‐Kang Zhu,et al.
RNA-directed DNA methylation.
,
2011,
Current opinion in plant biology.
[36]
C. Pikaard,et al.
Plant Nuclear RNA Polymerase IV Mediates siRNA and DNA Methylation-Dependent Heterochromatin Formation
,
2005,
Cell.
[37]
Hailing Jin,et al.
An Effector of RNA-Directed DNA Methylation in Arabidopsis Is an ARGONAUTE 4- and RNA-Binding Protein
,
2009,
Cell.
[38]
M. Sternberg,et al.
Protein structure prediction on the Web: a case study using the Phyre server
,
2009,
Nature Protocols.
[39]
Xuemei Chen,et al.
HEN1 recognizes 21–24 nt small RNA duplexes and deposits a methyl group onto the 2′ OH of the 3′ terminal nucleotide
,
2006,
Nucleic acids research.
[40]
J. Ellis,et al.
Multiple roles of arginine/serine-rich splicing factors in RNA processing.
,
2005,
Biochemical Society transactions.
[41]
M. Matzke,et al.
The role of MET1 in RNA-directed de novoand maintenance methylation of CG dinucleotides
,
2004,
Plant Molecular Biology.
[42]
HEN1 recognizes 21–24 nt small RNA duplexes and deposits a methyl group onto the 2′ OH of the 3′ terminal nucleotide
,
2006,
Nucleic acids research.
[43]
I. Henderson,et al.
Epigenetic inheritance in plants
,
2007,
Nature.
[44]
L. Paša-Tolić,et al.
Subunit compositions of the RNA-silencing enzymes Pol IV and Pol V reveal their origins as specialized forms of RNA polymerase II.
,
2009,
Molecular cell.
[45]
J. Jeddeloh,et al.
Arabidopsis MET1 cytosine methyltransferase mutants.
,
2003,
Genetics.
[46]
J. Ragoussis,et al.
A Large Fraction of Extragenic RNA Pol II Transcription Sites Overlap Enhancers
,
2010,
PLoS biology.
[47]
S. Jacobsen,et al.
The splicing factor SR45 affects the RNA-directed DNA methylation pathway in Arabidopsis
,
2012,
Epigenetics.
[48]
Jian‐Kang Zhu.
Epigenome Sequencing Comes of Age
,
2008,
Cell.
[49]
David P. Kreil,et al.
Atypical RNA polymerase subunits required for RNA-directed DNA methylation
,
2005,
Nature Genetics.
[50]
H. L. Sänger,et al.
RNA-directed de novo methylation of genomic sequences in plants
,
1994,
Cell.
[51]
H. Vaucheret,et al.
Gene silencing in plants: a diversity of pathways.
,
2013,
Biochimica et biophysica acta.
[52]
Jill M Dowen,et al.
Widespread dynamic DNA methylation in response to biotic stress
,
2012,
Proceedings of the National Academy of Sciences.
[53]
She Chen,et al.
IDN2 and Its Paralogs Form a Complex Required for RNA–Directed DNA Methylation
,
2012,
PLoS genetics.
[54]
Kun Dou,et al.
The PRP6-like splicing factor STA1 is involved in RNA-directed DNA methylation by facilitating the production of Pol V-dependent scaffold RNAs
,
2013,
Nucleic acids research.
[55]
Julie A. Law,et al.
DDR complex facilitates global association of RNA Polymerase V to promoters and evolutionarily young transposons
,
2012,
Nature Structural &Molecular Biology.
[56]
D. Baulcombe,et al.
An SNF2 Protein Associated with Nuclear RNA Silencing and the Spread of a Silencing Signal between Cells in Arabidopsis[W][OA]
,
2007,
The Plant Cell Online.
[57]
G. Morris,et al.
The Cajal body.
,
2008,
Biochimica et biophysica acta.
[58]
Brian D. Strahl,et al.
Polymerase IV occupancy at RNA-directed DNA methylation sites requires SHH1
,
2013,
Nature.
[59]
H. Vaucheret,et al.
Plant ARGONAUTES.
,
2008,
Trends in plant science.
[60]
C. Pikaard,et al.
Noncoding Transcription by RNA Polymerase Pol IVb/Pol V Mediates Transcriptional Silencing of Overlapping and Adjacent Genes
,
2008,
Cell.
[61]
Xin Deng,et al.
An atypical component of RNA-directed DNA methylation machinery has both DNA methylation-dependent and -independent roles in locus-specific transcriptional gene silencing
,
2011,
Cell Research.
[62]
S. Jacobsen,et al.
Role of the Arabidopsis DRM Methyltransferases in De Novo DNA Methylation and Gene Silencing
,
2002,
Current Biology.
[63]
Adam M. Gustafson,et al.
Genetic and Functional Diversification of Small RNA Pathways in Plants
,
2004,
PLoS biology.
[64]
T. Yin,et al.
RNA-directed DNA methylation in plants
,
2013,
Plant Cell Reports.
[65]
Xuemei Chen,et al.
Intergenic transcription by RNA polymerase II coordinates Pol IV and Pol V in siRNA-directed transcriptional gene silencing in Arabidopsis.
,
2009,
Genes & development.
[66]
L. Paša-Tolić,et al.
In Vitro Transcription Activities of Pol Iv, Pol V, and Rdr2 Reveal Coupling of Pol Iv and Rdr2 for Dsrna Synthesis in Plant Rna Silencing
,
2022
.
[67]
Craig S. Pikaard,et al.
An ARGONAUTE4-Containing Nuclear Processing Center Colocalized with Cajal Bodies in Arabidopsis thaliana
,
2006,
Cell.
[68]
Thomas J. Hardcastle,et al.
The Arabidopsis RNA-Directed DNA Methylation Argonautes Functionally Diverge Based on Their Expression and Interaction with Target Loci[W][OA]
,
2010,
Plant Cell.
[69]
D. Baulcombe,et al.
RNA Polymerase IV Directs Silencing of Endogenous DNA
,
2005,
Science.
[70]
Haixu Tang,et al.
Spatial and functional relationships among Pol V-associated loci, Pol IV-dependent siRNAs, and cytosine methylation in the Arabidopsis epigenome.
,
2012,
Genes & development.
[71]
Michael F. Lin,et al.
Chromatin signature reveals over a thousand highly conserved large non-coding RNAs in mammals
,
2009,
Nature.
[72]
Xianwu Zheng,et al.
ROS3 is an RNA-binding protein required for DNA demethylation in Arabidopsis
,
2008,
Nature.
[73]
D. Coleman-Derr,et al.
The Arabidopsis Nucleosome Remodeler DDM1 Allows DNA Methyltransferases to Access H1-Containing Heterochromatin
,
2013,
Cell.