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Cell Cycle (Georgetown, Tex.)|August 5, 2009
The Myc-nucleophosmin-ARF network: a complex web unveiledZhaoliang Li, Stephen R HannProceedings of the National Academy of Sciences of the United States of America|November 27, 2008
Nucleophosmin interacts directly with c-Myc and controls c-Myc-induced hyperproliferation and transformationZhaoliang Li, David Boone, Stephen R HannProceedings of the National Academy of Sciences of the United States of America|December 29, 2010
Egr1 mediates p53-independent c-Myc-induced apoptosis via a noncanonical ARF-dependent transcriptional mechanismDavid N Boone, Ying Qi, Zhaoliang Li, et al.Genes|May 9, 2017
MB0 and MBI Are Independent and Distinct Transactivation Domains in MYC that Are Essential for TransformationQin Zhang, Kimberly West-Osterfield, Erick Spears, et al.Nature|September 14, 2004
p19ARF directly and differentially controls the functions of c-Myc independently of p53Ying Qi, Mark A Gregory, Zhaoliang Li, et al.Proceedings of the National Academy of Sciences of the United States of America|January 2, 2013
Domain-specific c-Myc ubiquitylation controls c-Myc transcriptional and apoptotic activityQin Zhang, Erick Spears, David N Boone, et al.Cold Spring Harbor Perspectives in Medicine|June 19, 2014
MYC cofactors: molecular switches controlling diverse biological outcomesStephen R HannSeminars in Cancer Biology|August 30, 2006
Role of post-translational modifications in regulating c-Myc proteolysis, transcriptional activity and biological functionStephen R HannJournal of Cellular Biochemistry|November 19, 2005
The alpha1 subunit of GABAA receptor is repressed by c-myc and is pro-apoptoticUri A Vaknin, Stephen R HannCell Cycle (Georgetown, Tex.)|January 19, 2005
The ARF tumor suppressor: keeping Myc on a leashMark A Gregory, Ying Qi, Stephen R HannPageof 6