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7. Characterizing Requirements for Small Ubiquitin-like Modifier (SUMO) Modification and Binding on Base Excision Repair Activity of Thymine-DNA Glycosylase in Vivo. McLaughlin D; Coey CT; Yang WC; Drohat AC; Matunis MJ J Biol Chem; 2016 Apr; 291(17):9014-24. PubMed ID: 26917720 [TBL] [Abstract][Full Text] [Related]
8. Assessing the Role of Paralog-Specific Sumoylation of HDAC1. Citro S; Chiocca S Methods Mol Biol; 2017; 1510():329-337. PubMed ID: 27761832 [TBL] [Abstract][Full Text] [Related]
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13. Expression of sumoylation deficient Nkx2.5 mutant in Nkx2.5 haploinsufficient mice leads to congenital heart defects. Kim EY; Chen L; Ma Y; Yu W; Chang J; Moskowitz IP; Wang J PLoS One; 2011; 6(6):e20803. PubMed ID: 21677783 [TBL] [Abstract][Full Text] [Related]
14. Small ubiquitin-related modifier (SUMO) pathway-mediated enhancement of human cytomegalovirus replication correlates with a recruitment of SUMO-1/3 proteins to viral replication compartments. Scherer M; Reuter N; Wagenknecht N; Otto V; Sticht H; Stamminger T J Gen Virol; 2013 Jun; 94(Pt 6):1373-1384. PubMed ID: 23407422 [TBL] [Abstract][Full Text] [Related]
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16. SUMO-1 Promotes Ishikawa Cell Proliferation and Apoptosis in Endometrial Cancer by Increasing Sumoylation of Histone H4. Zheng J; Liu L; Wang S; Huang X Int J Gynecol Cancer; 2015 Oct; 25(8):1364-8. PubMed ID: 26222483 [TBL] [Abstract][Full Text] [Related]
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18. Human Regulatory Protein Ki-1/57 Is a Target of SUMOylation and Affects PML Nuclear Body Formation. Saito Â; Souza EE; Costa FC; Meirelles GV; Gonçalves KA; Santos MT; Bressan GC; McComb ME; Costello CE; Whelan SA; Kobarg J J Proteome Res; 2017 Sep; 16(9):3147-3157. PubMed ID: 28695742 [TBL] [Abstract][Full Text] [Related]
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