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Refinado por: Base de dados/Biblioteca: NUS Single-Journal Subscriptions remover Base de dados/Biblioteca: ROAD: Directory of Open Access Scholarly Resources remover
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1
Oxidative stress damages rRNA inside the ribosome and differentially affects the catalytic center
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Artigo
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Oxidative stress damages rRNA inside the ribosome and differentially affects the catalytic center

Willi, Jessica ; Küpfer, Pascal ; Evéquoz, Damien ; Fernandez, Guillermo ; Katz, Assaf ; Leumann, Christian ; Polacek, Norbert

Nucleic acids research, 2018-02, Vol.46 (4), p.1945-1957 [Periódico revisado por pares]

England: Oxford University Press

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2
Recognition and potential mechanisms for replication and erasure of cytosine hydroxymethylation
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Recognition and potential mechanisms for replication and erasure of cytosine hydroxymethylation

Hashimoto, Hideharu ; Liu, Yiwei ; Upadhyay, Anup K ; Chang, Yanqi ; Howerton, Shelley B ; Vertino, Paula M ; Zhang, Xing ; Cheng, Xiaodong

Nucleic acids research, 2012-06, Vol.40 (11), p.4841-4849 [Periódico revisado por pares]

England: Oxford University Press

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3
Genomic mapping of 5-hydroxymethylcytosine in the human brain
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Artigo
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Genomic mapping of 5-hydroxymethylcytosine in the human brain

Jin, Seung-Gi ; Wu, Xiwei ; Li, Arthur X ; Pfeifer, Gerd P

Nucleic acids research, 2011-07, Vol.39 (12), p.5015-5024 [Periódico revisado por pares]

England: Oxford University Press

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4
Sensitive enzymatic quantification of 5-hydroxymethylcytosine in genomic DNA
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Sensitive enzymatic quantification of 5-hydroxymethylcytosine in genomic DNA

Szwagierczak, Aleksandra ; Bultmann, Sebastian ; Schmidt, Christine S ; Spada, Fabio ; Leonhardt, Heinrich

Nucleic acids research, 2010-10, Vol.38 (19), p.e181-e181 [Periódico revisado por pares]

England: Oxford University Press

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5
Site-specific incorporation of a fluorescent nucleobase analog enhances i-motif stability and allows monitoring of i-motif folding inside cells
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Artigo
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Site-specific incorporation of a fluorescent nucleobase analog enhances i-motif stability and allows monitoring of i-motif folding inside cells

Mir, Bartomeu ; Serrano-Chacón, Israel ; Medina, Pedro ; Macaluso, Veronica ; Terrazas, Montserrat ; Gandioso, Albert ; Garavís, Miguel ; Orozco, Modesto ; Escaja, Núria ; González, Carlos

Nucleic acids research, 2024-04, Vol.52 (6), p.3375-3389 [Periódico revisado por pares]

England

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6
The methylomes of six bacteria
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Artigo
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The methylomes of six bacteria

Murray, Iain A ; Clark, Tyson A ; Morgan, Richard D ; Boitano, Matthew ; Anton, Brian P ; Luong, Khai ; Fomenkov, Alexey ; Turner, Stephen W ; Korlach, Jonas ; Roberts, Richard J

Nucleic acids research, 2012-12, Vol.40 (22), p.11450-11462 [Periódico revisado por pares]

England: Oxford University Press

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7
Examination of the specificity of DNA methylation profiling techniques towards 5-methylcytosine and 5-hydroxymethylcytosine
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Examination of the specificity of DNA methylation profiling techniques towards 5-methylcytosine and 5-hydroxymethylcytosine

Jin, Seung-Gi ; Kadam, Swati ; Pfeifer, Gerd P

Nucleic acids research, 2010-06, Vol.38 (11), p.e125-e125 [Periódico revisado por pares]

England: Oxford University Press

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8
Epigenetic modification of cytosines fine tunes the stability of i-motif DNA
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Epigenetic modification of cytosines fine tunes the stability of i-motif DNA

Wright, Elisé P ; Abdelhamid, Mahmoud A S ; Ehiabor, Michelle O ; Grigg, Melanie C ; Irving, Kelly ; Smith, Nicole M ; Waller, Zoë A E

Nucleic acids research, 2020-01, Vol.48 (1), p.55-62 [Periódico revisado por pares]

England: Oxford University Press

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9
TET1 is a maintenance DNA demethylase that prevents methylation spreading in differentiated cells
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TET1 is a maintenance DNA demethylase that prevents methylation spreading in differentiated cells

Jin, Chunlei ; Lu, Yue ; Jelinek, Jaroslav ; Liang, Shoudan ; Estecio, Marcos R H ; Barton, Michelle Craig ; Issa, Jean-Pierre J

Nucleic acids research, 2014-06, Vol.42 (11), p.6956-6971 [Periódico revisado por pares]

England: Oxford University Press

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10
Redox-active quinones induces genome-wide DNA methylation changes by an iron-mediated and Tet-dependent mechanism
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Redox-active quinones induces genome-wide DNA methylation changes by an iron-mediated and Tet-dependent mechanism

Zhao, Bailin ; Yang, Ying ; Wang, Xiaoli ; Chong, Zechen ; Yin, Ruichuan ; Song, Shu-Hui ; Zhao, Chao ; Li, Cuiping ; Huang, Hua ; Sun, Bao-Fa ; Wu, Danni ; Jin, Kang-Xuan ; Song, Maoyong ; Zhu, Ben-Zhan ; Jiang, Guibin ; Rendtlew Danielsen, Jannie M ; Xu, Guo-Liang ; Yang, Yun-Gui ; Wang, Hailin

Nucleic acids research, 2014-02, Vol.42 (3), p.1593-1605 [Periódico revisado por pares]

England: Oxford University Press

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