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Refinado por: assunto: Epigenetics remover
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1
Genetic variation at mouse and human ribosomal DNA influences associated epigenetic states
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Genetic variation at mouse and human ribosomal DNA influences associated epigenetic states

Rodriguez-Algarra, Francisco ; Seaborne, Robert A E ; Danson, Amy F ; Yildizoglu, Selin ; Yoshikawa, Harunori ; Law, Pui Pik ; Ahmad, Zakaryya ; Maudsley, Victoria A ; Brew, Ama ; Holmes, Nadine ; Ochôa, Mateus ; Hodgkinson, Alan ; Marzi, Sarah J ; Pradeepa, Madapura M ; Loose, Matthew ; Holland, Michelle L ; Rakyan, Vardhman K

Genome Biology, 2022-02, Vol.23 (1), p.54-54, Article 54 [Periódico revisado por pares]

England: BioMed Central

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2
Evidence that direct inhibition of transcription factor binding is the prevailing mode of gene and repeat repression by DNA methylation
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Evidence that direct inhibition of transcription factor binding is the prevailing mode of gene and repeat repression by DNA methylation

Kaluscha, Sebastian ; Domcke, Silvia ; Wirbelauer, Christiane ; Stadler, Michael B ; Durdu, Sevi ; Burger, Lukas ; Schübeler, Dirk

Nature genetics, 2022-12, Vol.54 (12), p.1895-1906 [Periódico revisado por pares]

United States: Nature Publishing Group

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3
Rif1 interacts with non-canonical polycomb repressive complex PRC1.6 to regulate mouse embryonic stem cells fate potential
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Rif1 interacts with non-canonical polycomb repressive complex PRC1.6 to regulate mouse embryonic stem cells fate potential

Li, Lu ; Li, Pishun ; Chen, Jiale ; Li, Li ; Shen, Yunfan ; Zhu, Yangzixuan ; Liu, Jiayi ; Lv, Lu ; Mao, Song ; Chen, Fang ; Hu, Guang ; Yuan, Kai

Cell regeneration, 2022-08, Vol.11 (1), p.1-25, Article 25 [Periódico revisado por pares]

Singapore: Springer Nature Singapore

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4
Loss of DNA methylation disrupts syncytiotrophoblast development: Proposed consequences of aberrant germline gene activation
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Loss of DNA methylation disrupts syncytiotrophoblast development: Proposed consequences of aberrant germline gene activation

Lea, Georgia ; Hanna, Courtney W.

BioEssays, 2024-01, Vol.46 (1), p.e2300140-n/a [Periódico revisado por pares]

United States: Wiley Subscription Services, Inc

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5
A comparative methylome analysis reveals conservation and divergence of DNA methylation patterns and functions in vertebrates
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A comparative methylome analysis reveals conservation and divergence of DNA methylation patterns and functions in vertebrates

Al Adhami, Hala ; Bardet, Anaïs Flore ; Dumas, Michael ; Cleroux, Elouan ; Guibert, Sylvain ; Fauque, Patricia ; Acloque, Hervé ; Weber, Michael

BMC biology, 2022-03, Vol.20 (1), p.70-70, Article 70 [Periódico revisado por pares]

England: BioMed Central Ltd

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6
Myofibroblast-derived SFRP1 as potential inhibitor of colorectal carcinoma field effect
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Myofibroblast-derived SFRP1 as potential inhibitor of colorectal carcinoma field effect

Valcz, Gábor ; Patai, Arpád V ; Kalmár, Alexandra ; Péterfia, Bálint ; Fűri, István ; Wichmann, Barnabás ; Műzes, Györgyi ; Sipos, Ferenc ; Krenács, Tibor ; Mihály, Emese ; Spisák, Sándor ; Molnár, Béla ; Tulassay, Zsolt Cukierman, Edna

PloS one, 2014-11, Vol.9 (11), p.e106143-e106143 [Periódico revisado por pares]

United States: Public Library of Science

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7
BANP opens chromatin and activates CpG-island-regulated genes
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BANP opens chromatin and activates CpG-island-regulated genes

Grand, Ralph S ; Burger, Lukas ; Gräwe, Cathrin ; Michael, Alicia K ; Isbel, Luke ; Hess, Daniel ; Hoerner, Leslie ; Iesmantavicius, Vytautas ; Durdu, Sevi ; Pregnolato, Marco ; Krebs, Arnaud R ; Smallwood, Sébastien A ; Thomä, Nicolas ; Vermeulen, Michiel ; Schübeler, Dirk

Nature (London), 2021-08, Vol.596 (7870), p.133-137 [Periódico revisado por pares]

England: Nature Publishing Group

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8
Mechanisms and function of de novo DNA methylation in placental development reveals an essential role for DNMT3B
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Mechanisms and function of de novo DNA methylation in placental development reveals an essential role for DNMT3B

Andrews, Simon ; Krueger, Christel ; Mellado-Lopez, Maravillas ; Hemberger, Myriam ; Dean, Wendy ; Perez-Garcia, Vicente ; Hanna, Courtney W

Nature communications, 2023-01, Vol.14 (1), p.371-371, Article 371 [Periódico revisado por pares]

England: Nature Publishing Group

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9
DNMT1 can induce primary germ layer differentiation through de novo DNA methylation
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DNMT1 can induce primary germ layer differentiation through de novo DNA methylation

Ito, Takamasa ; Kubiura‐Ichimaru, Musashi ; Miura, Fumihito ; Tajima, Shoji ; Surani, M. Azim ; Ito, Takashi ; Yamaguchi, Shinpei ; Tada, Masako

Genes to cells : devoted to molecular & cellular mechanisms, 2024-07, Vol.29 (7), p.549-566 [Periódico revisado por pares]

England: Wiley Subscription Services, Inc

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10
CXCR4 Regulates Temporal Differentiation via PRC1 Complex in Organogenesis of Epithelial Glands
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CXCR4 Regulates Temporal Differentiation via PRC1 Complex in Organogenesis of Epithelial Glands

Kim, Junchul ; Lee, Sang-Woo ; Park, Kyungpyo

International journal of molecular sciences, 2021-01, Vol.22 (2), p.619 [Periódico revisado por pares]

Switzerland: MDPI AG

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