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Oncotarget|September 17, 2016
SIRT2 deletion enhances KRAS-induced tumorigenesis in vivo by regulating K147 acetylation statusHa Yong Song, Marco Biancucci, Hong-Jun Kang, et al.Cell Metabolism|September 7, 2010
Hepatic-specific disruption of SIRT6 in mice results in fatty liver formation due to enhanced glycolysis and triglyceride synthesisHyun-Seok Kim, Cuiying Xiao, Rui-Hong Wang, et al.Nature Medicine|April 21, 2009
Histone H2AX is integral to hypoxia-driven neovascularizationMatina Economopoulou, Harald F Langer, Arkady Celeste, et al.The Journal of Biological Chemistry|November 30, 2018
Sirtuin 2-mediated deacetylation of cyclin-dependent kinase 9 promotes STAT1 signaling in type I interferon responsesEwa M Kosciuczuk, Swarna Mehrotra, Diana Saleiro, et al.Cancer Research|May 20, 2016
SIRT2-Mediated Deacetylation and Tetramerization of Pyruvate Kinase Directs Glycolysis and Tumor GrowthSeong-Hoon Park, Ozkan Ozden, Guoxiang Liu, et al.Molecular Cell|October 15, 2008
Interplay among BRCA1, SIRT1, and Survivin during BRCA1-associated tumorigenesisRui-Hong Wang, Yin Zheng, Hyun-Seok Kim, et al.Antioxidants & Redox Signaling|November 21, 2013
SIRT3 deacetylates ATP synthase F1 complex proteins in response to nutrient- and exercise-induced stressAthanassios Vassilopoulos, J Daniel Pennington, Thorkell Andresson, et al.The Journal of Clinical Investigation|March 14, 2017
Sirtuin 2 regulates cellular iron homeostasis via deacetylation of transcription factor NRF2Xiaoyan Yang, Seong-Hoon Park, Hsiang-Chun Chang, et al.Proceedings of the National Academy of Sciences of the United States of America|July 31, 2013
SIRT2 directs the replication stress response through CDK9 deacetylationHui Zhang, Seong-Hoon Park, Brooke G Pantazides, et al.Cancer Cell|October 22, 2011
SIRT2 maintains genome integrity and suppresses tumorigenesis through regulating APC/C activityHyun-Seok Kim, Athanassios Vassilopoulos, Rui-Hong Wang, et al.Pageof 4