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Editorials: Cell Cycle Features

SIRT2 orchestrates the DNA damage response

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Pages 2089-2090 | Received 20 Apr 2016, Accepted 25 Apr 2016, Published online: 27 Jul 2016

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Berta N. Vazquez, Joshua K. Thackray & Lourdes Serrano. (2017) Sirtuins and DNA damage repair: SIRT7 comes to play. Nucleus 8:2, pages 107-115.
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PamelaSara E Head, Priya Kapoor-Vazirani, Ganji P Nagaraju, Hui Zhang, Sandip K Rath, Nho C Luong, Ramona Haji-Seyed-Javadi, Fatmata Sesay, Shi-Ya Wang, Duc M Duong, Waaqo Daddacha, Elizabeth V Minten, Boying Song, Diana Danelia, Xu Liu, Shuyi Li, Eric A Ortlund, Nicholas T Seyfried, David M Smalley, Ya Wang, Xingming Deng, William S Dynan, Bassel El-Rayes, Anthony J Davis & David S Yu. (2023) DNA-PK is activated by SIRT2 deacetylation to promote DNA double-strand break repair by non-homologous end joining. Nucleic Acids Research.
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Priya Kapoor-Vazirani, Sandip K. Rath, Xu Liu, Zhen Shu, Nicole E. Bowen, Yitong Chen, Ramona Haji-Seyed-Javadi, Waaqo Daddacha, Elizabeth V. Minten, Diana Danelia, Daniela Farchi, Duc M. Duong, Nicholas T. Seyfried, Xingming Deng, Eric A. Ortlund, Baek Kim & David S. Yu. (2022) SAMHD1 deacetylation by SIRT1 promotes DNA end resection by facilitating DNA binding at double-strand breaks. Nature Communications 13:1.
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Mandy O. J. Grootaert & Martin R. Bennett. (2022) Sirtuins in atherosclerosis: guardians of healthspan and therapeutic targets. Nature Reviews Cardiology 19:10, pages 668-683.
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Joanna A. Ruszkiewicz, Alexander Bürkle & Aswin Mangerich. (2022) Fueling genome maintenance: On the versatile roles of NAD+ in preserving DNA integrity. Journal of Biological Chemistry 298:6, pages 102037.
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Hui Zhang, Eric B. Dammer, Duc M. Duong, Diana Danelia, Nicholas T. Seyfried & David S. Yu. (2022) Quantitative proteomic analysis of the lysine acetylome reveals diverse SIRT2 substrates. Scientific Reports 12:1.
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Takeshi Yasuda, Kazuya Takizawa, Ayako Ui, Michio Hama, Wataru Kagawa, Kaoru Sugasawa & Katsushi Tajima. (2021) Human SIRT2 and SIRT3 deacetylases function in DNA homologous recombinational repair. Genes to Cells 26:5, pages 328-335.
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Elizabeth V. Minten, Priya Kapoor-Vazirani, Chunyang Li, Hui Zhang, Kamakshi Balakrishnan & David S. Yu. (2021) SIRT2 promotes BRCA1-BARD1 heterodimerization through deacetylation. Cell Reports 34:13, pages 108921.
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Denise Lasigliè. 2021. Hormones and Aging. Hormones and Aging 221 264 .
Kalina Wiatr, Piotr Piasecki, Łukasz Marczak, Paweł Wojciechowski, Małgorzata Kurkowiak, Rafał Płoski, Małgorzata Rydzanicz, Luiza Handschuh, Johannes Jungverdorben, Oliver Brüstle, Marek Figlerowicz & Maciej Figiel. (2019) Altered Levels of Proteins and Phosphoproteins, in the Absence of Early Causative Transcriptional Changes, Shape the Molecular Pathogenesis in the Brain of Young Presymptomatic Ki91 SCA3/MJD Mouse. Molecular Neurobiology 56:12, pages 8168-8202.
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Francisco Alejandro Lagunas-Rangel. (2019) Current role of mammalian sirtuins in DNA repair. DNA Repair 80, pages 85-92.
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Yun-Jung Choi, Min-Hee Kang, Kwonho Hong & Jin-Hoi Kim. (2019) Tubastatin A inhibits HDAC and Sirtuin activity rather than being a HDAC6-specific inhibitor in mouse oocytes. Aging 11:6, pages 1759-1777.
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Éva M. Szegő, Tiago F. Outeiro & Aleksey G. Kazantsev. 2018. Introductory Review on Sirtuins in Biology, Aging, and Disease. Introductory Review on Sirtuins in Biology, Aging, and Disease 175 195 .
PamelaSara E. Head, Hui Zhang, Amanda J. Bastien, Allyson E. Koyen, Allison E. Withers, Waaqo B. Daddacha, Xiaodong Cheng & David S. Yu. (2017) Sirtuin 2 mutations in human cancers impair its function in genome maintenance. Journal of Biological Chemistry 292:24, pages 9919-9931.
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