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The Journal of Biological Chemistry|November 1, 2000
Solution structure of the N-terminal domain of the human TFIIH MAT1 subunit: new insights into the RING finger familyV Gervais, D Busso, E Wasielewski, et al.Protein Science : a Publication of the Protein Society|July 13, 2000
A new model for 20-hydroxyecdysone and dibenzoylhydrazine binding: a homology modeling and docking approachJ M Wurtz, B Guillot, J Fagart, et al.Proceedings of the National Academy of Sciences of the United States of America|May 1, 1987
Spontaneous assembly of double-stranded helicates from oligobipyridine ligands and copper(I) cations: structure of an inorganic double helixJ M Lehn, A Rigault, J Siegel, et al.Nucleic Acids Symposium Series|January 1, 1995
Electrostatic potential in aminoacylation by aspartyl-tRNAs synthetaseM Tsunoda, A Takenaka, J Cavarelli, et al.Molecular and Cellular Biology|December 22, 1998
Characterization of the DNA-binding and dimerization properties of the nuclear orphan receptor germ cell nuclear factorH Greschik, J M Wurtz, P Hublitz, et al.The Journal of Biological Chemistry|March 30, 2001
Crystal structure of a mutant hERalpha ligand-binding domain reveals key structural features for the mechanism of partial agonismM Gangloff, M Ruff, S Eiler, et al.Molecular Cell|July 6, 2000
Crystal structure of a heterodimeric complex of RAR and RXR ligand-binding domainsW Bourguet, V Vivat, J M Wurtz, et al.Gene|November 21, 1996
Genomic organization of the rat aspartyl-tRNA synthetase gene family: a single active gene and several retropseudogenesM Lazard, F Agou, J Cavarelli, et al.Journal of Molecular Biology|July 5, 1993
Crystal structure of cleaved bovine antithrombin III at 3.2 A resolutionL Mourey, J P Samama, M Delarue, et al.The EMBO Journal|September 2, 1998
Crystal structure of aspartyl-tRNA synthetase from Pyrococcus kodakaraensis KOD: archaeon specificity and catalytic mechanism of adenylate formationE Schmitt, L Moulinier, S Fujiwara, et al.Pageof 19