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Journal of Molecular Biology|November 20, 1986
Pre-steady-state kinetics of ribosomal translocationJ M Robertson, H Paulsen, W WintermeyerThe EMBO Journal|December 19, 1998
Complete kinetic mechanism of elongation factor Tu-dependent binding of aminoacyl-tRNA to the A site of the E. coli ribosomeT Pape, W Wintermeyer, M V RodninaThe EMBO Journal|July 6, 2000
Arginines 29 and 59 of elongation factor G are important for GTP hydrolysis or translocation on the ribosomeD Mohr, W Wintermeyer, M V RodninaBiochemistry|June 3, 1986
Affinities of tRNA binding sites of ribosomes from Escherichia coliR Lill, J M Robertson, W WintermeyerJournal of Molecular Biology|June 25, 1983
Topological arrangement of two transfer RNAs on the ribosome. Fluorescence energy transfer measurements between A and P site-bound tRNApheH Paulsen, J M Robertson, W WintermeyerProceedings of the National Academy of Sciences of the United States of America|April 30, 1996
Truncated elongation factor G lacking the G domain promotes translocation of the 3' end but not of the anticodon domain of peptidyl-tRNAC Borowski, M V Rodnina, W WintermeyerBiochemistry|December 18, 1984
tRNA binding sites of ribosomes from Escherichia coliR Lill, J M Robertson, W WintermeyerGenomics|May 1, 1993
Mapping immunoglobulin gene-related DNA probes to the central region of normal and pericentrically inverted human chromosome 2A Lautner-Rieske, H Hameister, G Barbi, et al.Nucleic Acids Research|February 25, 1981
DNA sequence of the constant gene region of the mouse immunoglobulin kappa chainW Altenburger, P S Neumaier, M Steinmetz, et al.Nucleic Acids Research|November 1, 1976
Specific cleavage of chromatin by restriction nucleasesW Hörz, T Igo-Kemenes, W Pfeiffer, et al.Pageof 19