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Proceedings of the National Academy of Sciences of the United States of America|October 1, 1987
Enhanced protein thermostability from site-directed mutations that decrease the entropy of unfoldingB W Matthews, H Nicholson, W J BecktelNature|December 15, 1988
Enhanced protein thermostability from designed mutations that interact with alpha-helix dipolesH Nicholson, W J Becktel, B W MatthewsBiopolymers|November 1, 1992
Analysis of the effectiveness of proline substitutions and glycine replacements in increasing the stability of phage T4 lysozymeH Nicholson, D E Tronrud, W J Becktel, et al.Nature|August 4, 1988
Hydrophobic stabilization in T4 lysozyme determined directly by multiple substitutions of Ile 3M Matsumura, W J Becktel, B W MatthewsProceedings of the National Academy of Sciences of the United States of America|September 1, 1989
Stabilization of phage T4 lysozyme by engineered disulfide bondsM Matsumura, W J Becktel, M Levitt, et al.Biochemistry|April 14, 1992
Dissection of helix capping in T4 lysozyme by structural and thermodynamic analysis of six amino acid substitutions at Thr 59J A Bell, W J Becktel, U Sauer, et al.Journal of Molecular Biology|November 5, 1989
Contributions of left-handed helical residues to the structure and stability of bacteriophage T4 lysozymeH Nicholson, E Söderlind, D E Tronrud, et al.Biochemistry|July 23, 1991
Contributions of engineered surface salt bridges to the stability of T4 lysozyme determined by directed mutagenesisD P Sun, U Sauer, H Nicholson, et al.Biochemistry|October 15, 1991
Analysis of the interaction between charged side chains and the alpha-helix dipole using designed thermostable mutants of phage T4 lysozymeH Nicholson, D E Anderson, S Dao-pin, et al.Biochemistry|February 5, 1991
Second-site revertants of an inactive T4 lysozyme mutant restore activity by restructuring the active site cleftA R Poteete, D P Sun, H Nicholson, et al.Pageof 48