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Biochemistry|May 24, 2006
Optimization of a ribosomal structural domain by natural selectionCorina Maeder, Graeme L Conn, David E DraperJournal of Molecular Biology|October 26, 2005
A small protein unique to bacteria organizes rRNA tertiary structure over an extensive region of the 50 S ribosomal subunitCorina Maeder, David E DraperChemistry & Biology|March 1, 2005
Coevolution of protein and RNA structures within a highly conserved ribosomal domainMark S Dunstan, Debraj Guhathakurta, David E Draper, et al.Journal of Molecular Biology|June 11, 2002
A compact RNA tertiary structure contains a buried backbone-K+ complexGraeme L Conn, Apostolos G Gittis, Eaton E Lattman, et al.Antimicrobial Agents and Chemotherapy|March 15, 2017
Substrate Recognition and Modification by a Pathogen-Associated Aminoglycoside Resistance 16S rRNA MethyltransferaseKellie Vinal, Graeme L ConnJournal of Chemical Information and Modeling|June 9, 2026
KNexPHENIX: A PHENIX-Based Workflow for Improving Cryo-EM and Crystallographic Structural ModelsSuparno Nandi, Graeme L ConnBiorxiv : the Preprint Server for Biology|November 19, 2025
KNexPHENIX: A PHENIX-Based Workflow for Improving Cryo-EM and Crystallographic Structural ModelsSuparno Nandi, Graeme L ConnThe Journal of Biological Chemistry|August 3, 2014
Binding induced RNA conformational changes control substrate recognition and catalysis by the thiostrepton resistance methyltransferase (Tsr)Emily G Kuiper, Graeme L ConnNucleic Acids Research|February 6, 2008
Analysis of adenovirus VA RNAI structure and stability using compensatory base pair modificationsVeronica K Coventry, Graeme L ConnBiochimica Et Biophysica Acta|June 26, 2014
Expansion of the aminoglycoside-resistance 16S rRNA (m(1)A1408) methyltransferase family: expression and functional characterization of four hypothetical enzymes of diverse bacterial originMarta A Witek, Graeme L ConnPageof 13