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Cell|April 27, 2005
Structures of MLSBK antibiotics bound to mutated large ribosomal subunits provide a structural explanation for resistanceDaqi Tu, Gregor Blaha, Peter B Moore, et al.Antimicrobial Agents and Chemotherapy|September 10, 2009
Structures of triacetyloleandomycin and mycalamide A bind to the large ribosomal subunit of Haloarcula marismortuiGüliz Gürel, Gregor Blaha, Thomas A Steitz, et al.Proceedings of the National Academy of Sciences of the United States of America|August 20, 2002
Structural insights into peptide bond formationJeffrey L Hansen, T Martin Schmeing, Peter B Moore, et al.Journal of Molecular Biology|May 6, 2008
Mutations outside the anisomycin-binding site can make ribosomes drug-resistantGregor Blaha, Güliz Gürel, Susan J Schroeder, et al.Journal of Molecular Biology|February 27, 2007
The structures of antibiotics bound to the E site region of the 50 S ribosomal subunit of Haloarcula marismortui: 13-deoxytedanolide and girodazoleSusan J Schroeder, Gregor Blaha, Julian Tirado-Rives, et al.Molecular Cell|August 2, 2002
The structures of four macrolide antibiotics bound to the large ribosomal subunitJeffrey L Hansen, Joseph A Ippolito, Nenad Ban, et al.FEBS Letters|February 1, 2005
On the structural basis of peptide-bond formation and antibiotic resistance from atomic structures of the large ribosomal subunitThomas A SteitzNature Reviews. Molecular Cell Biology|February 23, 2008
A structural understanding of the dynamic ribosome machineThomas A SteitzCurrent Opinion in Structural Biology|October 9, 2009
The structural changes of T7 RNA polymerase from transcription initiation to elongationThomas A SteitzCurrent Opinion in Structural Biology|April 23, 2004
The structural basis of the transition from initiation to elongation phases of transcription, as well as translocation and strand separation, by T7 RNA polymeraseThomas A SteitzPageof 15