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The EMBO Journal|June 1, 1995
Codon-dependent conformational change of elongation factor Tu preceding GTP hydrolysis on the ribosomeM V Rodnina, R Fricke, L Kuhn, et al.Nucleic Acids Research|July 11, 1984
Composite human VK genes and a model of their evolutionH R Jaenichen, M Pech, W Lindenmaier, et al.Nucleic Acids Research|September 25, 1985
Human immunoglobulin kappa light chain genes of subgroups II and IIIH G Klobeck, A Meindl, G Combriato, et al.Immunogenetics|January 1, 1997
A yeast artificial chromosome contig spanning the mouse immunoglobulin kappa light chain locusI W Schupp, T Schlake, T Kirschbaum, et al.Molecular Immunology|May 1, 1988
The J kappa proximal region of the human K locus contains three uncommon V kappa genes which are arranged in opposite transcriptional polaritiesW Lorenz, K F Schäble, R Thiebe, et al.Gene|September 30, 1988
Transposed human immunoglobulin V kappa gene regions carry clusters of conserved sequence elementsE Lötscher, W Siwka, F J Zimmer, et al.Journal of Molecular Biology|July 13, 2000
Role of domains 4 and 5 in elongation factor G functions on the ribosomeA Savelsbergh, N B Matassova, M V Rodnina, et al.Nature|September 6, 1990
Megabase inversions in the human genome as physiological eventsG M Weichhold, H G Klobeck, R Ohnheiser, et al.Nature|January 2, 1997
Hydrolysis of GTP by elongation factor G drives tRNA movement on the ribosomeM V Rodnina, A Savelsbergh, V I Katunin, et al.Biochemistry|November 4, 1998
Interaction of guanine nucleotides with the signal recognition particle from Escherichia coliJ R Jagath, M V Rodnina, G Lentzen, et al.Pageof 19