Van Heeke, Protein Expression and Purification 4:265-274, 1993. |
Clark. A. J., et al., “Rescuing Transgene Expression by Co-integration,” Bio/Technol. 10:1450-1454 (1992). |
Eipper, B. A., et al., “The Biosynthesis of Neuropeptides: Peptide α-amidation,” Annu. Rev. Neurosci. 15:57-85 (1992). |
Eipper, B. A., et al., “Peptidylglycine α-amidating monooxygenase: A multifunctional protein with catalytic, processing, and routing domains,” Protein Sci. 2:489-497 (Apr. 1993). |
Han, K.-K., et al., “Current Developments in Chemical Cleavage of Proteins,” Int. J. Biochem. 15(7):875-884 (1983). |
Houdebine, L.-M., “Production of pharmaceutical proteins from transgenic animals,” J. Biotechnol. 34 (3):269-287 (May 31, 1994). |
Lindahl, L., and Vogel, H. J., “Metal-Ion-Dependent Hydrophobic-Interaction Chromatography of a α-Lactalbumins,” Anal. Biochem. 140:394-402 (1984). |
Paleyanda, R.K. et al., “Transgenic pigs produce functional human factor VIII in milk,” Nature Biotechnology 15 (10):971-975 (Oct. 1997). |
Pursel, V.G., et al., “Genetic Engineering of Livestock,,” Science 244:1281-1288 (1989). |
Pursel, V. G., and Rexroad, C. E., Jr., “Status of Research with Transgenic Farm Animals,” J. Anim. Sci. 71(Suppl. 3):10-19 (Mar. 1993). |
Ray, M. V., et al., “Production of Racombinant Salmon Calcitionin by In Vitro Amidation of an Escherichia coli Produced Precursor Peptide,” Bio/Technol. 11:64-70 (Jan. 1993). |
Wold, F., “In Vivo Chemical Modification of Proteins (Post-Translation Modification),” Ann. Rev. Biochem. 50:783-814 (1981). |
Wright, G., et al., “High Level Expression of Active Human Alpha-1-Antitrypsin in the Milk of Transgenic Shep,” Bio/Technol. 9:830-834 (1991). |
English language abstract of EP 0 590 530 A1 Apr. 6, 1994. |
Clark, A.J., “Transgenic animals and the manipulation of milk composition,” Animal Genetics 20:327-328 (1989). |
Clark, A.J., et al., “Expression of Human Anti-hemophilic Factor IX in the Milk of Transgenic Sheep,” Bio/Technology 7:487-492 (may 1989). |
Ibrahimi, I.M., et al., “Determinants for protein translocation across mammalian endoplasmic reticulum. Membrane insertion of truncated and full -length prelysozyme molecules,” Eur. J. Biochem. 155:571-576 (1986). |
Okun. M.M., et al., “Truncation of a Secretory Protein Define Minimum Lengths Required for Binding to Signal Recognition Particle and Translocation across the Endoplasmic Reticulum Membrane,” J. Bio. Chem. 265:7478-7484 (may 1990). |
Prasad, R.V., et al., “Amino Acid Sequence of Rat α-Lactalbumin: A Unique α-Lactalbumin,” Biochemistry 21:1479-1482 (1982). |