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Biochemistry|October 18, 1988
The structure of rat mast cell protease II at 1.9-A resolutionS J Remington, R G Woodbury, R A Reynolds, et al.The Journal of Biological Chemistry|January 25, 1985
Crystals of luciferase from Vibrio harveyi. A preliminary characterizationR Swanson, L H Weaver, S J Remington, et al.Biochemistry|December 29, 1987
Slow- and fast-binding inhibitors of thermolysin display different modes of binding: crystallographic analysis of extended phosphonamidate transition-state analoguesH M Holden, D E Tronrud, A F Monzingo, et al.Protein Engineering|October 1, 1995
Enhancement of protein stability by the combination of point mutations in T4 lysozyme is additiveX J Zhang, W A Baase, B K Shoichet, et al.Protein Engineering|June 2, 2000
Use of a non-rigid region in T4 lysozyme to design an adaptable metal-binding siteJ W Wray, W A Baase, G J Ostheimer, et al.Proceedings of the National Academy of Sciences of the United States of America|May 1, 1982
Structural similarity in the DNA-binding domains of catabolite gene activator and cro repressor proteinsT A Steitz, D H Ohlendorf, D B McKay, et al.Biochemistry|October 26, 1993
Energetic cost and structural consequences of burying a hydroxyl group within the core of a protein determined from Ala-->Ser and Val-->Thr substitutions in T4 lysozymeM Blaber, J D Lindstrom, N Gassner, et al.Journal of Molecular Biology|September 20, 1987
Structural studies of mutants of the lysozyme of bacteriophage T4. The temperature-sensitive mutant protein Thr157----IleM G Grütter, T M Gray, L H Weaver, et al.Nature|May 3, 1990
Ancestral lysozymes reconstructed, neutrality tested, and thermostability linked to hydrocarbon packingB A Malcolm, K P Wilson, B W Matthews, et al.Proceedings of the National Academy of Sciences of the United States of America|October 1, 1992
Escherichia coli biotin holoenzyme synthetase/bio repressor crystal structure delineates the biotin- and DNA-binding domainsK P Wilson, L M Shewchuk, R G Brennan, et al.Pageof 18