Exploration of the conformational space of oxytocin and arginine-vasopressin using the electrostatically driven Monte Carlo and molecular dynamics methods.
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V J Hruby | A. Liwo | L. Lankiewicz | V. Hruby | S. Ołdziej | S. Talluri | A. Tempczyk | F. Kasprzykowski | A Liwo | A Tempczyk | S Ołdziej | M D Shenderovich | S Talluri | J Ciarkowski | F Kasprzykowski | L Lankiewicz | Z Grzonka | Z. Grzonka | J. Ciarkowski | M. Shenderovich
[1] C. Larive,et al. Dynamics of cis/trans isomerization of the cysteine6-proline peptide bonds of oxytocin and arginine-vasopressin in aqueous and methanol solutions , 1993 .
[2] S. Rackovsky,et al. Prediction of protein conformation on the basis of a search for compact structures: Test on avian pancreatic polypeptide , 1993, Protein science : a publication of the Protein Society.
[3] S. Wodak,et al. Transfer nuclear Overhauser effect study of the conformation of oxytocin bound to bovine neurophysin I. , 1993, Biochemistry.
[4] H. Scheraga,et al. Conformational analysis of the 20 naturally occurring amino acid residues using ECEPP. , 1977, Macromolecules.
[5] H. Scheraga,et al. Energy parameters in polypeptides. VII. Geometric parameters, partial atomic charges, nonbonded interactions, hydrogen bond interactions, and intrinsic torsional potentials for the naturally occurring amino acids , 1975 .
[6] Harold A. Scheraga,et al. Structure and free energy of complex thermodynamic systems , 1988 .
[8] V. Hruby,et al. 300-MHz nuclear magnetic resonance study of oxytocin aqueous solution: conformational implications. , 1973, Proceedings of the National Academy of Sciences of the United States of America.
[9] O Jardetzky,et al. On the nature of molecular conformations inferred from high-resolution NMR. , 1980, Biochimica et biophysica acta.
[10] H. Sterk,et al. Assignment of proton NMR resonances and conformational analysis of [Lys8]‐vasopressin homologues , 1991 .
[11] T. Blundell,et al. Crystal structure analysis of deamino-oxytocin: conformational flexibility and receptor binding. , 1988, Science.
[12] E. Kojro,et al. Conformation of [8-arginine]vasopressin and V1 antagonists in dimethyl sulfoxide solution derived from two-dimensional NMR spectroscopy and molecular dynamics simulation. , 1991, European journal of biochemistry.
[13] M. Levitt. A simplified representation of protein conformations for rapid simulation of protein folding. , 1976, Journal of molecular biology.
[14] D. Osguthorpe,et al. Structure and energetics of ligand binding to proteins: Escherichia coli dihydrofolate reductase‐trimethoprim, a drug‐receptor system , 1988, Proteins.
[15] V. Hruby,et al. Conformational and structural considerations in oxytocin-receptor binding and biological activity. , 1990, Annual review of pharmacology and toxicology.
[16] H. Scheraga,et al. Empirical solvation models can be used to differentiate native from near‐native conformations of bovine pancreatic trypsin inhibitor , 1991, Proteins.
[17] A. Liwo,et al. Conformational analysis of [Cpp1, Sar7, Arg8] vasopressin by 1H-NMR spectroscopy and molecular mechanics calculations. , 2009, International journal of peptide and protein research.
[18] V. Hruby,et al. Conformational studies of peptide hormones using laser Raman and circular dichroism spectroscopy. A comparative study of oxytocin agonists and antagonists. , 1978, The Journal of biological chemistry.
[19] D. Ripoll,et al. On the multiple‐minima problem in the conformational analysis of polypeptides. IV. Application of the electrostatically driven monte carlo method to the 20‐residue membrane‐bound portion of melittin , 1990, Biopolymers.
[20] C. Larive,et al. Cis/trans conformational equilibrium across the cysteine6-proline peptide bond of oxytocin, arginine vasopressin, and lysine vasopressin , 1992 .
[21] K. Wüthrich,et al. Structure determination of the Antp (C39----S) homeodomain from nuclear magnetic resonance data in solution using a novel strategy for the structure calculation with the programs DIANA, CALIBA, HABAS and GLOMSA. , 1991, Journal of molecular biology.
[22] H. Scheraga,et al. Energy parameters in polypeptides. 9. Updating of geometrical parameters, nonbonded interactions, and hydrogen bond interactions for the naturally occurring amino acids , 1983 .
[23] V. Hruby,et al. NMR studies on the conformation of derivatives of the side chain of oxytocin: examples of cis-trans isomerism. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[24] Peter S. Shenkin,et al. Cluster analysis of molecular conformations , 1994, J. Comput. Chem..
[25] V. Hruby,et al. Conformational study of the potent peptide hormone antagonist [1-penicillamine,2-leucine]oxytocin in aqueous solution. , 1981, Biochemistry.
[26] V. Hruby,et al. Proposed conformations of oxytocin and selected analogs in dimethyl sulfoxide as deduced from proton magnetic resonance studies. , 1973, Biochemistry.
[27] D J Osguthorpe,et al. Dynamics and conformational energetics of a peptide hormone: vasopressin. , 1985, Science.
[28] G. Chipens,et al. Determination of cyclopeptide conformations in solution using NMR data and conformational energy calculations. , 1988, Biophysical chemistry.
[29] Adam Liwo,et al. Molecular mechanics calculations on deaminooxytocin and on deamino-arginine-vasopressin and its analogues , 1989, J. Comput. Aided Mol. Des..
[30] H. Scheraga,et al. Monte Carlo-minimization approach to the multiple-minima problem in protein folding. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[31] H. Scheraga,et al. On the multiple‐minima problem in the conformational analysis of polypeptides. II. An electrostatically driven Monte Carlo method—tests on poly(L‐alanine) , 1988, Biopolymers.
[32] R. Bhaskaran,et al. Conformational properties of oxytocin in dimethyl sulfoxide solution: NMR and restrained molecular dynamics studies , 1992, Biopolymers.
[33] H A Scheraga,et al. Empirical solvation models in the context of conformational energy searches: Application to bovine pancreatic trypsin inhibitor , 1992, Proteins.
[34] H. Scheraga,et al. Conformational energy studies of oxytocin and its cyclic moiety. , 1972, Proceedings of the National Academy of Sciences of the United States of America.
[35] R. Hughes,et al. Structure of pressinoic acid: the cyclic moiety of vasopressin. , 1986, Science.
[36] R C Brower,et al. Exhaustive conformational search and simulated annealing for models of lattice peptides , 1993, Biopolymers.
[37] K. Wüthrich. NMR of proteins and nucleic acids , 1988 .
[38] K Wüthrich,et al. Efficient computation of three-dimensional protein structures in solution from nuclear magnetic resonance data using the program DIANA and the supporting programs CALIBA, HABAS and GLOMSA. , 1991, Journal of molecular biology.
[39] D. Urry,et al. Secondary structure of the cyclic moiety of the peptide hormone oxytocin and its deamino analog. , 1970, Proceedings of the National Academy of Sciences of the United States of America.
[40] R Brüschweiler,et al. Conformational backbone dynamics of the cyclic decapeptide antamanide. Application of a new multiconformational search algorithm based on NMR data. , 1993, Biochemistry.
[41] B. Robson,et al. Development and testing of protocols for computer-aided design of peptide drugs, using oxytocin. , 1991, Journal of theoretical biology.
[42] A molecular mechanics study of the effect of substitution in position 1 on the conformational space of the oxytocin/vasopressin ring , 1993, J. Comput. Aided Mol. Des..
[43] V. Hruby,et al. Structure-activity studies of a novel bicyclic oxytocin antagonist. , 1992, Journal of medicinal chemistry.
[44] H. Scheraga,et al. Energy parameters in polypeptides. 10. Improved geometrical parameters and nonbonded interactions for use in the ECEPP/3 algorithm, with application to proline-containing peptides , 1994 .
[45] H A Scheraga,et al. Minimization of polypeptide energy. II. Preliminary structures of oxytocin, vasopressin, and an octapeptide from ribonuclease. , 1967, Proceedings of the National Academy of Sciences of the United States of America.
[46] Conformation-activity study of the uterotonic antagonists of oxytocin , 1993 .
[47] H. Scheraga,et al. Chain reversals in proteins. , 1973, Biochimica et biophysica acta.
[48] T. Fujiwara,et al. Oxytocin solution structure changes upon protonation of the N-terminus in dimethyl sulfoxide , 1993, Journal of biomolecular NMR.
[49] G. Chipens,et al. Theoretical conformational analysis of oxytocin molecule. , 2009, International journal of peptide and protein research.