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Journal of Molecular Biology|August 25, 1983
Crystallographic data for complexes of the Cro repressor with DNAW F Anderson, M Cygler, M Vandonselaar, et al.Science (New York, N.Y.)|February 5, 1988
Replacements of Pro86 in phage T4 lysozyme extend an alpha-helix but do not alter protein stabilityT Alber, J A Bell, D P Sun, et al.Journal of Molecular Evolution|January 1, 1984
Comparison of goose-type, chicken-type, and phage-type lysozymes illustrates the changes that occur in both amino acid sequence and three-dimensional structure during evolutionL H Weaver, M G Grütter, S J Remington, et al.Journal of Molecular Biology|October 8, 1999
Structural analysis of a non-contiguous second-site revertant in T4 lysozyme shows that increasing the rigidity of a protein can enhance its stabilityJ W Wray, W A Baase, J D Lindstrom, et al.Proteins|December 19, 2000
Docking molecules by families to increase the diversity of hits in database screens: computational strategy and experimental evaluationA I Su, D M Lorber, G S Weston, et al.The Journal of Biological Chemistry|July 5, 1986
Different interactions used by Cro repressor in specific and nonspecific DNA bindingY Takeda, J G Kim, C G Caday, et al.Biochemistry|December 26, 2001
A structural view of the action of Escherichia coli (lacZ) beta-galactosidaseD H Juers, T D Heightman, A Vasella, et al.Science (New York, N.Y.)|January 10, 1992
Response of a protein structure to cavity-creating mutations and its relation to the hydrophobic effectA E Eriksson, W A Baase, X J Zhang, et al.Proceedings of the National Academy of Sciences of the United States of America|August 15, 1995
Eukaryotic methionyl aminopeptidases: two classes of cobalt-dependent enzymesS M Arfin, R L Kendall, L Hall, et al.Biochemistry|May 2, 1989
High-resolution structure of the temperature-sensitive mutant of phage lysozyme, Arg 96----HisL H Weaver, T M Gray, M G Grütter, et al.Pageof 20