Zhang et al., “Zuotin, a putative Z-DNA binding protein in Saccharomyces cerevisiae”, The EMBO J. 11(10):3787-3796 (1992). |
Osterman, D.G. and Kaiser, E.T., “Design and Characterization of Peptides with Amphiphilic β-Strand Structures”, J. Cell. Biochem. 29:57-72 (1985). |
Brack, A. and Orgel, L.E., “β structures of alternating polypeptides and their possible prebiotic significance”, Nature 256: 383-387 (1975). |
Brack, A. and Caille, A., “Synthesis and β-Conformation of Copolypeptides with Alternating Hydrophilic and Hydrophobic Residues”, Int. J. Peptide Protein Res. 11:128-139 (1978). |
Brack, A. and Barbier, R., “Early Peptidic Enzymes”, Adv. Spac. Res. 9(6):(6)83-(6)87 (1989). |
Marqusee S. and Baldwin, R.L., “Helix stabilization by Glu Lys+ salt bridges in short peptides of de novo design”, Proc. Natl. Acad. Sci. USA 84:8898-8902 (1987). |
Marqusee, S., et al., “Unusually stable helix formation in short alanine-based peptides”, Proc. Natl. Acad. Sci. USA 86:5286-5290 (1989). |
Padmanabhan, S., et al., “Relative helix-forming tendencies of nonpolar amino acids”, Nature 344:268-270 (1991). |
Seipke, G., et al., “Synthesis and Properties of Alternating Poly(Lys-Phe) and Comparison with the Random Copolymer Poly(Lys51, Phe49)”, Biopolymers 13:1621-1633 (1974). |
St. Pierre, S., et al., “Conformational Studies of Sequential Polypeptides Containing Lysine and Tyrosine”, Biopolymers 17:1837-1848 (1978). |
Peggion, E., et al., “Conformational Studies on Polypeptides. The Effect of Sodium Perchlorate on the Conformation of Poly-L-lysine and of Random Copolymers of L-lysine and L-Phenylalanine in Aqueous Solution”, Biopolymers 11: 633-643 (1972). |
Trudelle, Y., “Conformational study of the sequential (Tyr-Glu)η copolymer in aqueous solution”, Polymer 16:9-15 (1975). |
Rippon, W.B., et al., “Spectroscopic Characterization of Poly(Glu-Ala)”, J. Mol. Biol. 75:369-375 (1973). |
Gay, N.J., et al., “A leucine-rich repeat peptide derived from the Drosophila Toll receptor forms extended filaments with a β-sheet structure”, FEBS 291(1):87-91 (1991). |
Hilbich, C., et al., “Aggregation and Secondary Structure of Synthetic Amyloid βA4 Peptides of Alzheimer's Disease”,J. Mol. Biol. 218:149-163 (1991). |
Halverson, K., “Molecular Determinants of Amyloid Deposition in Alzheimer's Disease: Conformational Studies of Synthetic β-Protein Fragments”, Biochemistry 29:2639-2644 (1990). |
Gasset, M., et al., “Pertubation of the secondary structure of the Scrapie prion protein under conditions that alter infectivity”, Proc. Natl. Acad. Sci. USA 90:1-5 (1993). |
Lizardi, P.M., “Genetic Polymorphism of Silk Fibroin Studied by Two-Dimensional Translation Pause Fingerprints”, Cell 18:581-589 (1979). |
Thomas, E.L., “Gigamolecules in Flatland”, Science 259:43-45 (1993). |
Stupp, S.I., “Synthesis of Two-Dimensional Polymers”, Science 259:59-63 (1993). |
Gulik-Krzywicki, T., et al., “Electron microscopic study of supramolecular liquid crystalline polymers formed by molecular recognition-directed self-assembly from complementary chiral components”, Proc. Natl. Acad. Sci. USA 90:163-167 (1993). |
Smith, G.G. and Peck, G.E., “Continuous-Flow System for Determination of Diffusion Coefficients: Use of a Natural Membrane”, J. of Pharmaceutical Sciences 65(5):727-732 (1976). |
Physicians' Desk Reference, 47th Edition, Medical Economics Data, Montvale, NJ, p. 2598 (1993). |
Peppas, N.A. and Langer, R., “New Challenges in Biomaterials”, Science 263:1715-1720 (1994). |
Lehn, J.M., “Self-assembly of double helical, triple helical and deoxyribonucleo-helicate architectures”, Chemistry & Biology, Introductory issue, xviii-xix (1994). |
Fréchet, J.M., “Functional Polymers and Dendrimers: Reactivity, Molecular Architecture, and Interfacial Energy”, Science 263:1710-1719 (1994). |
Clery, D., “After Years in the Dark, Electric Plastic Finally Shines”, Science 263:1700-1703 (1994). |
Hynes, R.O., “Integrins: Versatility, Modulation, and Signaling in Cell Adhesion”, Cell 69:11-25 (1992). |
Yamada, K.M., “Adhesive Recognition Sequences”, J. of Biological Chemistry 266(20):12809-12812 (1991). |
Prieto, A.L. et al., “Multiple integrins mediate cell attachment to cytotactin/tenascin”, Proc. Natl. Acad. Sci. USA 90:10154-10158 (1993). |
Cima, L.G. and Langer, R., “Engineering Human Tissue”, Chemical Engineering Progress 89(6):46-54 (1993). |
Barrera, D. et al., “Synthesis and RGD Peptide Modification of a New Biodegradable Copolyner: Poly(lactic acid-co-lysine)”, J. Am. Chem. Soc. 115:11010-11011 (1993). |
Den Dunnen, W. F. A. et al., “A new PLLA/PCL copolymer for nerve regeneration”, J. of Materials Science: Materials in Medicine 4:521-525 (1993). |
Lin, H.B. et al., “Synthesis, surface, and cell-adhesion properties of polyurethanes containing covalently grafted RGD-peptides”, J. of Biomedical Materials Research 28:329-342 (1994). |
Dagani, R., “Biodegradable copolymer eyed as tissue matrix”, C&EN p. 5 (1993). |
WPI Accession No. 92-313679/38 (JP 4-221395) (1992). |
WPI Accession No. 92-313678/38 (JP-4-221394) (1992). |
Zhang, S. et al., “Spontaneous assembly of a self-complementary oligopeptide to form a stable macroscopic membrane”, Proc. Natl. Acad. Sci. USA 90:3334-3338 (1993). |
Yu, A., et al., “Zuotin, A Yeast Z-DNA Binding Protein, May be Involved in DNA Repair”, Biophysical Journal 66(2):A359 (1994). |
Zhang, S., et al., “Usually Stable β-Sheet Formation in an Ionic Self-Complementary Oligopeptide”, Biopolymers 34:663-672 (1994). |
Xing, Y., et al., “Subunit interaction in the CCAAT-binding heteromeric complex is mediated by a very short α-helix in HAP2”, Proc. Natl. Acad. Sci. USA 91:3009-3012 (1994). |
Zhang, S., et al., “The Gene for Biotin Synthase from Saccharomyces cerevisiae: Cloning, Sequencing, and Complementation of Escherichia coli Strains Lacking Biotin Synthase,” Archives of Biochemistry and Biophysicis 309 (1):29-35 (1994). |