Martilla et al, “Recombinant NeutraLite Avidin: a non-glycosylated, acidic mutant of chicken avidin that exhibits high affinity for biotin and low non-specific binding properties,” Feb. 04, 2000, FEBS Letters, vol. 467, pp 31-36.* |
Laitnen et al. “Mutationof a critical tryptophan to lysine in avidin or streptavidin may explain why sea urchin fibropellin adopts an avidin-like domain,” Nov. 12, 1999, FEBS Letters, vol. 461, pp. 52-58.* |
Nardone et al. “Biochemical characterization and crystal structure of a recombinant hen avidin and its acidic mutant expressed in Escherichia coli,” Sep. 01, 1998, Europ. J. of Biochem., vol. 256 (2), pp. 453-460.* |
Sano, et al, “Molecular Engineering of Streptavidin,” Ann. NY Acad. Sci 799:383-390 (1996). |
Sano, et al, “Intersubunit contacts made by tryptophan 120 with biotin are essential for both strong biotin binding and biotin-induced tighter subunit association of Streptavidin,” Proc. Natl. Acad. Sci USA 92:3180-3184 (1995). |
Chilkoti, et al, “Engineered Chimeric Streptavidin Tetramers As Novel Tools For Bioseparations And Drug Delivery,” Biotechnology 13:1198-1204 (1995). |
Carter, “Site specific Proteolysis of Fusion Proteins,” ACS Symp. Ser 427: 181-193 (1990). |
Gitlin, et al, “Studies on the biotin—binding sites of avidin and streptavidin,” Biochem J 269:527-536 (1990). |
Weber, et al, “Structural Origins of High Affinity Biotin binding to Streptavidin” Science 243:85-88 (1989). |
Bell, et al, “Proteins and Enzymes,” (Prentice Hall, 1988), p. 61. |