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Biochemistry|April 21, 1987
Protein engineering of subtilisin BPN': enhanced stabilization through the introduction of two cysteines to form a disulfide bondM W Pantoliano, R C Ladner, P N Bryan, et al.Biochemistry|October 22, 1991
Conformational stability, folding, and ligand-binding affinity of single-chain Fv immunoglobulin fragments expressed in Escherichia coliM W Pantoliano, R E Bird, S Johnson, et al.Biochemistry|September 5, 1989
Large increases in general stability for subtilisin BPN' through incremental changes in the free energy of unfoldingM W Pantoliano, M Whitlow, J F Wood, et al.Proteins|December 1, 1986
Proteases of enhanced stability: characterization of a thermostable variant of subtilisinP N Bryan, M L Rollence, M W Pantoliano, et al.Biochemistry|November 1, 1988
The engineering of binding affinity at metal ion binding sites for the stabilization of proteins: subtilisin as a test caseM W Pantoliano, M Whitlow, J F Wood, et al.The Journal of Biological Chemistry|October 25, 1990
Immunological and structural characterization of a high affinity anti-fluorescein single-chain antibodyW D Bedzyk, K M Weidner, L K Denzin, et al.The Journal of Biological Chemistry|October 28, 1994
Identification and concerted function of two receptor binding surfaces on basic fibroblast growth factor required for mitogenesisB A Springer, M W Pantoliano, F A Barbera, et al.Journal of the National Cancer Institute|July 18, 1990
In vivo tumor targeting of a recombinant single-chain antigen-binding proteinD Colcher, R Bird, M Roselli, et al.Journal of Biomolecular Screening|January 15, 2002
High-density miniaturized thermal shift assays as a general strategy for drug discoveryM W Pantoliano, E C Petrella, J D Kwasnoski, et al.Biochemistry|August 30, 1994
Multivalent ligand-receptor binding interactions in the fibroblast growth factor system produce a cooperative growth factor and heparin mechanism for receptor dimerizationM W Pantoliano, R A Horlick, B A Springer, et al.Pageof 2