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1
Proviral silencing in embryonic stem cells requires the histone methyltransferase ESET
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Artigo
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Proviral silencing in embryonic stem cells requires the histone methyltransferase ESET

Lorincz, Matthew C ; Shinkai, Yoichi ; Matsui, Toshiyuki ; Leung, Danny ; Miyashita, Hiroki ; Maksakova, Irina A ; Miyachi, Hitoshi ; Kimura, Hiroshi ; Tachibana, Makoto

Nature (London), 2010-04, Vol.464 (7290), p.927-931 [Periódico revisado por pares]

London: Nature Publishing Group

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2
dCas9-based epigenome editing suggests acquisition of histone methylation is not sufficient for target gene repression
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dCas9-based epigenome editing suggests acquisition of histone methylation is not sufficient for target gene repression

O'Geen, Henriette ; Ren, Chonghua ; Nicolet, Charles M ; Perez, Andrew A ; Halmai, Julian ; Le, Victoria M ; Mackay, Joel P ; Farnham, Peggy J ; Segal, David J

Nucleic acids research, 2017-09, Vol.45 (17), p.9901-9916 [Periódico revisado por pares]

England: Oxford University Press

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3
Epigenetic activation of meiotic recombination near Arabidopsis thaliana centromeres via loss of H3K9me2 and non-CG DNA methylation
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Epigenetic activation of meiotic recombination near Arabidopsis thaliana centromeres via loss of H3K9me2 and non-CG DNA methylation

Underwood, Charles J ; Choi, Kyuha ; Lambing, Christophe ; Zhao, Xiaohui ; Serra, Heïdi ; Borges, Filipe ; Simorowski, Joe ; Ernst, Evan ; Jacob, Yannick ; Henderson, Ian R ; Martienssen, Robert A

Genome research, 2018-04, Vol.28 (4), p.519-531 [Periódico revisado por pares]

United States: Cold Spring Harbor Laboratory Press

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4
DNA Methylation and SETDB1/H3K9me3 Regulate Predominantly Distinct Sets of Genes, Retroelements, and Chimeric Transcripts in mESCs
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DNA Methylation and SETDB1/H3K9me3 Regulate Predominantly Distinct Sets of Genes, Retroelements, and Chimeric Transcripts in mESCs

Karimi, Mohammad M. ; Goyal, Preeti ; Maksakova, Irina A. ; Bilenky, Misha ; Leung, Danny ; Tang, Jie Xin ; Shinkai, Yoichi ; Mager, Dixie L. ; Jones, Steven ; Hirst, Martin ; Lorincz, Matthew C.

Cell stem cell, 2011-06, Vol.8 (6), p.676-687 [Periódico revisado por pares]

Cambridge, MA: Elsevier Inc

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5
Cancer‐associated upregulation of histone H3 lysine 9 trimethylation promotes cell motility in vitro and drives tumor formation in vivo
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Cancer‐associated upregulation of histone H3 lysine 9 trimethylation promotes cell motility in vitro and drives tumor formation in vivo

Yokoyama, Yuhki ; Hieda, Miki ; Nishioka, Yu ; Matsumoto, Ayaka ; Higashi, Satomi ; Kimura, Hiroshi ; Yamamoto, Hirofumi ; Mori, Masaki ; Matsuura, Shuji ; Matsuura, Nariaki

Cancer science, 2013-07, Vol.104 (7), p.889-895 [Periódico revisado por pares]

England: John Wiley & Sons, Inc

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6
Evolutionary Persistence of DNA Methylation for Millions of Years after Ancient Loss of a De Novo Methyltransferase
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Evolutionary Persistence of DNA Methylation for Millions of Years after Ancient Loss of a De Novo Methyltransferase

Catania, Sandra ; Dumesic, Phillip A. ; Pimentel, Harold ; Nasif, Ammar ; Stoddard, Caitlin I. ; Burke, Jordan E. ; Diedrich, Jolene K. ; Cooke, Sophie ; Shea, Terrance ; Gienger, Elizabeth ; Lintner, Robert ; Yates, John R. ; Hajkova, Petra ; Narlikar, Geeta J. ; Cuomo, Christina A. ; Pritchard, Jonathan K. ; Madhani, Hiten D.

Cell, 2020-01, Vol.180 (2), p.263-277.e20 [Periódico revisado por pares]

United States: Elsevier Inc

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7
A Subset of the Histone H3 Lysine 9 Methyltransferases Suv39h1, G9a, GLP, and SETDB1 Participate in a Multimeric Complex
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A Subset of the Histone H3 Lysine 9 Methyltransferases Suv39h1, G9a, GLP, and SETDB1 Participate in a Multimeric Complex

Fritsch, Lauriane ; Robin, Philippe ; Mathieu, Jacques R.R. ; Souidi, Mouloud ; Hinaux, Hélène ; Rougeulle, Claire ; Harel-Bellan, Annick ; Ameyar-Zazoua, Maya ; Ait-Si-Ali, Slimane

Molecular cell, 2010-01, Vol.37 (1), p.46-56 [Periódico revisado por pares]

United States: Elsevier Inc

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8
ATX3, ATX4, and ATX5 Encode Putative H3K4 Methyltransferases and Are Critical for Plant Development
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ATX3, ATX4, and ATX5 Encode Putative H3K4 Methyltransferases and Are Critical for Plant Development

Chen, Li-Qun ; Luo, Jin-Hong ; Cui, Zhen-Hai ; Xue, Ming ; Wang, Li ; Zhang, Xiao-Yu ; Pawlowski, Wojciech P. ; He, Yan

Plant physiology (Bethesda), 2017-07, Vol.174 (3), p.1795-1806 [Periódico revisado por pares]

United States: American Society of Plant Biologists

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9
Polymorphisms in Arsenic(+III Oxidation State) Methyltransferase (AS3MT) Predict Gene Expression of AS3MT as Well as Arsenic Metabolism
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Polymorphisms in Arsenic(+III Oxidation State) Methyltransferase (AS3MT) Predict Gene Expression of AS3MT as Well as Arsenic Metabolism

Engström, Karin ; Vahter, Marie ; Mlakar, Simona Jurkovic ; Concha, Gabriela ; Nermell, Barbro ; Raqib, Rubhana ; Cardozo, Alejandro ; Broberg, Karin

Environmental health perspectives, 2011-02, Vol.119 (2), p.182-188 [Periódico revisado por pares]

Research Triangle Park, NC: National Institute of Environmental Health Sciences

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10
The histone methyltransferase SETDB1 is recurrently amplified in melanoma and accelerates its onset
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Artigo
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The histone methyltransferase SETDB1 is recurrently amplified in melanoma and accelerates its onset

CEOL, Craig J ; HOUVRAS, Yariv ; BOURQUE, Caitlin ; BURKE, Christopher J ; TURNER, Laura ; UONG, Audrey ; JOHNSON, Laura A ; BEROUKHIM, Rameen ; MERMEL, Craig H ; LODA, Massimo ; AIT-SI-ALI, Slimane ; GARRAWAY, Levi A ; JANE-VALBUENA, Judit ; YOUNG, Richard A ; ZON, Leonard I ; BILODEAU, Steve ; ORLANDO, David A ; BATTISTI, Valentine ; FRITSCH, Lauriane ; LIN, William M ; HOLLMANN, Travis J ; FERRE, Fabrizio

Nature (London), 2011-03, Vol.471 (7339), p.513-517 [Periódico revisado por pares]

London: Nature Publishing Group

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