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Journal of Molecular Biology|January 5, 1987
Structure of bacteriophage T4 lysozyme refined at 1.7 A resolutionL H Weaver, B W MatthewsProceedings of the National Academy of Sciences of the United States of America|August 4, 1999
Structural basis of the conversion of T4 lysozyme into a transglycosidase by reengineering the active siteR Kuroki, L H Weaver, B W MatthewsNature Structural Biology|November 1, 1995
Structure-based design of a lysozyme with altered catalytic activityR Kuroki, L H Weaver, B W MatthewsScience (New York, N.Y.)|December 24, 1993
A covalent enzyme-substrate intermediate with saccharide distortion in a mutant T4 lysozymeR Kuroki, L H Weaver, B W MatthewsJournal of Molecular Biology|January 6, 1995
The refined structures of goose lysozyme and its complex with a bound trisaccharide show that the "goose-type" lysozymes lack a catalytic aspartate residueL H Weaver, M G Grütter, B W MatthewsNature|June 30, 1983
Goose lysozyme structure: an evolutionary link between hen and bacteriophage lysozymes?M G Grütter, L H Weaver, B W MatthewsProtein Science : a Publication of the Protein Society|November 21, 2001
Competing protein:protein interactions are proposed to control the biological switch of the E coli biotin repressorL H Weaver, K Kwon, D Beckett, et al.Proceedings of the National Academy of Sciences of the United States of America|May 17, 2001
Corepressor-induced organization and assembly of the biotin repressor: a model for allosteric activation of a transcriptional regulatorL H Weaver, K Kwon, D Beckett, et al.Proceedings of the National Academy of Sciences of the United States of America|April 15, 1991
Three-dimensional structure of human basic fibroblast growth factorA E Eriksson, L S Cousens, L H Weaver, et al.Protein Engineering|February 1, 1987
Use of site-directed mutagenesis to obtain isomorphous heavy-atom derivatives for protein crystallography: cysteine-containing mutants of phage T4 lysozymeD P Sun, T Alber, J A Bell, et al.Pageof 18