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Journal of Molecular Biology|August 26, 1998
Combined biophysical and biochemical information confirms arrangement of transmembrane helices visible from the three-dimensional map of frog rhodopsinP Herzyk, R E HubbardBiophysical Journal|December 1, 1995
Automated method for modeling seven-helix transmembrane receptors from experimental dataP Herzyk, R E HubbardBiophysical Journal|March 25, 1998
Using experimental information to produce a model of the transmembrane domain of the ion channel phospholambanP Herzyk, R E HubbardProteins|November 1, 1993
A reduced representation of proteins for use in restraint satisfaction calculationsP Herzyk, R E HubbardReceptors & Channels|January 1, 1996
Automated modelling of the transmembrane region of G-protein coupled receptor by Swiss-modelM C Peitsch, P Herzyk, T N Wells, et al.Protein Engineering|September 1, 1992
The solution structure of echistatin: evidence for disulphide bond rearrangement in homologous snake toxinsR M Cooke, B G Carter, P Murray-Rust, et al.Journal of Molecular Graphics & Modelling|June 26, 1998
Modeling of the three-dimensional structure of the human melanocortin 1 receptor, using an automated method and docking of a rigid cyclic melanocyte-stimulating hormone core peptideP Prusis, H B Schiöth, R Muceniece, et al.Biochemical and Biophysical Research Communications|June 30, 1987
Conformational properties of 3'-azido-3'deoxy-thymidine (AZT), an inhibitor of HIV reverse transcriptaseP Herzyk, A Beveridge, S NeidleJournal of Biomolecular Structure & Dynamics|October 1, 1991
Molecular dynamics simulations of dinucleoside and dinucleoside-drug crystal hydratesP Herzyk, J M Goodfellow, S NeidlePageof 9