Development of hydrophobicity parameters to analyze proteins which bear post- or cotranslational modifications.
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[1] G. Fasman. Prediction of Protein Structure and the Principles of Protein Conformation , 2012, Springer US.
[2] P. Argos,et al. Structural prediction of membrane-bound proteins. , 2005, European journal of biochemistry.
[3] R. Henderson,et al. Model for the structure of bacteriorhodopsin based on high-resolution electron cryo-microscopy. , 1990, Journal of molecular biology.
[4] K. Simons,et al. Palmitylation of viral membrane glycoproteins takes place after exit from the endoplasmic reticulum. , 1989, The Journal of biological chemistry.
[5] M. Caron,et al. Palmitoylation of the human beta 2-adrenergic receptor. Mutation of Cys341 in the carboxyl tail leads to an uncoupled nonpalmitoylated form of the receptor. , 1989, The Journal of biological chemistry.
[6] C. Strader,et al. Structural basis of β‐adrenergic receptor function , 1989, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[7] G. Landes,et al. Beta-hydroxyaspartic acid in the first epidermal growth factor-like domain of protein C. Its role in Ca2+ binding and biological activity. , 1988, The Journal of biological chemistry.
[8] A. Hershko. Ubiquitin-mediated protein degradation. , 1988, The Journal of biological chemistry.
[9] M. Edidin,et al. Constraint of the translational diffusion of a membrane glycoprotein by its external domains. , 1988, Science.
[10] S. Arfin,et al. Cotranslational processing and protein turnover in eukaryotic cells. , 1988, Biochemistry.
[11] H. Khorana. Bacteriorhodopsin, a membrane protein that uses light to translocate protons. , 1988, The Journal of biological chemistry.
[12] Y. Arata,et al. Analyses of N-linked oligosaccharides using a two-dimensional mapping technique. , 1988, Analytical biochemistry.
[13] A. Kossiakoff,et al. Tertiary structure is a principal determinant to protein deamidation. , 1988, Science.
[14] M A Roseman,et al. Hydrophilicity of polar amino acid side-chains is markedly reduced by flanking peptide bonds. , 1988, Journal of molecular biology.
[15] Richard Wolfenden,et al. Comparing the polarities of the amino acids: side-chain distribution coefficients between the vapor phase, cyclohexane, 1-octanol, and neutral aqueous solution , 1988 .
[16] E. Olson,et al. Acylation of proteins with myristic acid occurs cotranslationally. , 1987, Science.
[17] W. Lennarz. Protein glycosylation in the endoplasmic reticulum: current topological issues. , 1987, Biochemistry.
[18] A M Lesk,et al. Interior and surface of monomeric proteins. , 1987, Journal of molecular biology.
[19] T. Poulos,et al. High-resolution crystal structure of cytochrome P450cam. , 1987, Journal of molecular biology.
[20] C. DeLisi,et al. Hydrophobicity scales and computational techniques for detecting amphipathic structures in proteins. , 1987, Journal of molecular biology.
[21] R. Hodges,et al. New hydrophilicity scale derived from high-performance liquid chromatography peptide retention data: correlation of predicted surface residues with antigenicity and X-ray-derived accessible sites. , 1986, Biochemistry.
[22] A. D. McLachlan,et al. Solvation energy in protein folding and binding , 1986, Nature.
[23] J. Berzofsky. Intrinsic and extrinsic factors in protein antigenic structure. , 1985, Science.
[24] Ruurd van der Zee,et al. Prediction of sequential antigenic regions in proteins , 1985, FEBS letters.
[25] G. Rose,et al. Hydrophobicity of amino acid residues in globular proteins. , 1985, Science.
[26] Charles E. Bugg,et al. Three-dimensional structure of calmodulin , 1985, Nature.
[27] Mark L. Pearson,et al. Complete nucleotide sequence of the AIDS virus, HTLV-III , 1985, Nature.
[28] D. Eisenberg,et al. Correlation of sequence hydrophobicities measures similarity in three-dimensional protein structure. , 1983, Journal of molecular biology.
[29] R. MacGillivray,et al. Characterization of the complementary deoxyribonucleic acid and gene coding for human prothrombin. , 1983, Biochemistry.
[30] M. Haniu,et al. Amino acid sequence of the Pseudomonas putida cytochrome P-450. II. Cyanogen bromide peptides, acid cleavage peptides, and the complete sequence. , 1982, The Journal of biological chemistry.
[31] David Eisenberg,et al. The helical hydrophobic moment: a measure of the amphiphilicity of a helix , 1982, Nature.
[32] R. Doolittle,et al. A simple method for displaying the hydropathic character of a protein. , 1982, Journal of molecular biology.
[33] Manfred Schmidt,et al. Partition coefficients of amino acids and hydrophobic parameters π of their side-chains as measured by thin-layer chromatography☆ , 1981 .
[34] Gunnar von Heijne,et al. On the Hydrophobic Nature of Signal Sequences , 1981 .
[35] B. Roe,et al. Three-dimensional structure of Escherichia coli initiator tRNAfMet , 1980, Nature.
[36] R. Wolfenden,et al. Water, protein folding, and the genetic code. , 1979, Science.
[37] Akintola A. Aboderin,et al. An empirical hydrophobicity scale for α-amino-acids and some of its applications , 1971 .
[38] C. Tanford,et al. The solubility of amino acids and two glycine peptides in aqueous ethanol and dioxane solutions. Establishment of a hydrophobicity scale. , 1971, The Journal of biological chemistry.
[39] R. Doolittle. Molecular evolution: computer analysis of protein and nucleic acid sequences. , 1990, Methods in enzymology.
[40] J. Gordon,et al. The biology and enzymology of eukaryotic protein acylation. , 1988, Annual review of biochemistry.
[41] A. Leo,et al. Extension of the fragment method to calculate amino acid zwitterion and side chain partition coefficients , 1987, Proteins.
[42] W. Huttner. Protein tyrosine sulfation , 1987 .
[43] G. Rose,et al. Turns in peptides and proteins. , 1985, Advances in protein chemistry.
[44] T. Hunter. Protein-Tryosine Kinases , 1985 .
[45] F Wold,et al. In vivo chemical modification of proteins (post-translational modification). , 1981, Annual review of biochemistry.
[46] P. Bornstein,et al. The biosynthesis of collagen. , 1974, Annual review of biochemistry.
[47] K. Marcker,et al. How proteins start. , 1968, Scientific American.