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Structure (London, England : 1993)|November 14, 2002
Dehydrogenases, NAD, and transcription--what's the connection?Ronen MarmorsteinTrends in Biochemical Sciences|February 11, 2003
Structure of SET domain proteins: a new twist on histone methylationRonen MarmorsteinNovartis Foundation Symposium|June 3, 2004
Structural and chemical basis of histone acetylationRonen MarmorsteinThe Journal of Biological Chemistry|October 23, 2012
Structural basis for sirtuin activity and inhibitionHua Yuan, Ronen MarmorsteinTrends in Biochemical Sciences|September 11, 2020
Protein N-Terminal Acetylation: Structural Basis, Mechanism, Versatility, and RegulationSunbin Deng, Ronen MarmorsteinMethods in Enzymology|October 14, 2019
Biochemical and structural analysis of N-terminal acetyltransferasesLeah Gottlieb, Ronen MarmorsteinBiopolymers|November 24, 2012
Histone acetyltransferases: Rising ancient counterparts to protein kinasesHua Yuan, Ronen MarmorsteinBiochemistry|November 6, 2012
Different regions of the HPV-E7 and Ad-E1A viral oncoproteins bind competitively but through distinct mechanisms to the CH1 transactivation domain of p300Daniela Fera, Ronen MarmorsteinGenes & Development|November 3, 2007
Structure of the retinoblastoma protein bound to adenovirus E1A reveals the molecular basis for viral oncoprotein inactivation of a tumor suppressorXin Liu, Ronen MarmorsteinPageof 42