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The Journal of Biological Chemistry|July 25, 1980
The identification by affinity chromatography of the rat liver ribosomal proteins that bind to elongator and initiator transfer ribonucleic acidsN Ulbrich, I G Wool, E Ackerman, et al.Journal of Molecular Biology|January 5, 1985
Directly photocrosslinked nucleotides joining transfer RNA to aminoacyl-tRNA synthetase in methionine and tyrosine systemsE J Ackerman, A Joachimiak, V Klinghofer, et al.The Journal of Biological Chemistry|April 5, 1987
The structural basis for the interaction between L-tryptophan and the Escherichia coli trp aporepressorR Q Marmorstein, A Joachimiak, M Sprinzl, et al.Nature|May 18, 1995
Structural determinants of nuclear receptor assembly on DNA direct repeatsF Rastinejad, T Perlmann, R M Evans, et al.Cell|April 29, 1999
The 2.8 A crystal structure of visual arrestin: a model for arrestin's regulationJ A Hirsch, C Schubert, V V Gurevich, et al.Cell|December 15, 1995
Structure of the high affinity complex of inositol trisphosphate with a phospholipase C pleckstrin homology domainK M Ferguson, M A Lemmon, J Schlessinger, et al.Biochemistry|August 13, 1996
Structure and importance of the dimerization domain in elongation factor Ts from Thermus thermophilusY Jiang, S Nock, M Nesper, et al.Proceedings of the National Academy of Sciences of the United States of America|June 10, 1997
The 2.1-A crystal structure of an archaeal preinitiation complex: TATA-box-binding protein/transcription factor (II)B core/TATA-boxP F Kosa, G Ghosh, B S DeDecker, et al.Nature Structural Biology|September 1, 1995
Scratching the surface with the PH domainK M Ferguson, M A Lemmon, P B Sigler, et al.Journal of Thrombosis and Haemostasis : JTH|January 14, 2004
What the structure of angiostatin may tell us about its mechanism of actionJ H Geiger, S E CnuddePageof 2,070