Thermodynamic Characterization of Hydration Sites from Integral Equation-Derived Free Energy Densities: Application to Protein Binding Sites and Ligand Series
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Stefan Güssregen | Gerhard Hessler | Jochen Heil | Hans Matter | Stefan M Kast | H. Matter | G. Hessler | E. Lionta | S. Kast | S. Güssregen | Evanthia Lionta | J. Heil
[1] G J Williams,et al. The Protein Data Bank: a computer-based archival file for macromolecular structures. , 1977, Journal of molecular biology.
[2] David Chandler,et al. Optimized Cluster Expansions for Classical Fluids. II. Theory of Molecular Liquids , 1972 .
[3] Gerhard Klebe,et al. Utilising structural knowledge in drug design strategies: applications using Relibase. , 2003, Journal of molecular biology.
[4] Junmei Wang,et al. Development and testing of a general amber force field , 2004, J. Comput. Chem..
[5] Kamran Haider,et al. Combining Solvent Thermodynamic Profiles with Functionality Maps of the Hsp90 Binding Site to Predict the Displacement of Water Molecules , 2013, J. Chem. Inf. Model..
[6] S. Wold,et al. Multivariate Data Analysis in Chemistry , 1984 .
[7] R. Huber,et al. Crystal structures of factor Xa specific inhibitors in complex with trypsin: structural grounds for inhibition of factor Xa and selectivity against thrombin , 1995, FEBS letters.
[8] Colin McMartin,et al. QXP: Powerful, rapid computer algorithms for structure-based drug design , 1997, J. Comput. Aided Mol. Des..
[9] P. Kollman,et al. Automatic atom type and bond type perception in molecular mechanical calculations. , 2006, Journal of molecular graphics & modelling.
[10] Caterina Barillari,et al. Classification of water molecules in protein binding sites. , 2007, Journal of the American Chemical Society.
[11] R. Cramer,et al. Comparative molecular field analysis (CoMFA). 1. Effect of shape on binding of steroids to carrier proteins. , 1988, Journal of the American Chemical Society.
[12] Bruce L. Bush,et al. Extending the trend vector: The trend matrix and sample-based partial least squares , 1994, J. Comput. Aided Mol. Des..
[13] Themis Lazaridis,et al. Computing the thermodynamic contributions of interfacial water. , 2012, Methods in molecular biology.
[14] Arieh Ben-Naim,et al. Solvation thermodynamics of nonionic solutes , 1984 .
[15] W. Punch,et al. Predicting conserved water-mediated and polar ligand interactions in proteins using a K-nearest-neighbors genetic algorithm. , 1997, Journal of molecular biology.
[16] F. Hirata,et al. Three-dimensional density profiles of water in contact with a solute of arbitrary shape: a RISM approach , 1998 .
[17] Gillian C. Lynch,et al. Ion and solvent density distributions around canonical B-DNA from integral equations. , 2011, The journal of physical chemistry. B.
[18] A. Bondi. van der Waals Volumes and Radii , 1964 .
[19] S. Kast,et al. Molecular dynamics simulation of the cytosolic mouth in Kcv-type potassium channels. , 2007, Biochemistry.
[20] Stefan M. Kast,et al. A minimalist model for ion partitioning and competition in a K+ channel selectivity filter , 2011, The Journal of general physiology.
[21] W. F. V. Gunsteren,et al. Moleküldynamik‐Computersimulationen; Methodik, Anwendungen und Perspektiven in der Chemie , 1990 .
[22] M. Gilson,et al. Spatial Decomposition of Translational Water–Water Correlation Entropy in Binding Pockets , 2015, Journal of chemical theory and computation.
[23] Yasuomi Kiyota,et al. Molecular recognition study on the binding of calcium to calbindin D9k based on 3D reference interaction site model theory. , 2014, The journal of physical chemistry. B.
[24] A. Kovalenko,et al. Spatial decomposition of solvation free energy based on the 3D integral equation theory of molecular liquid: application to miniproteins. , 2011, The journal of physical chemistry. B.
[25] D. Case,et al. Ion counting from explicit-solvent simulations and 3D-RISM. , 2014, Biophysical journal.
[26] S. Ten-no,et al. Ab initio study of water: self-consistent determination of electronic structure and liquid state properties , 1997 .
[27] Glen Eugene Kellogg,et al. HINT: A new method of empirical hydrophobic field calculation for CoMFA , 1991, J. Comput. Aided Mol. Des..
[28] Timothy Clark,et al. 3D-QSAR Based on Quantum-Chemical Molecular Fields: Toward an Improved Description of Halogen Interactions , 2012, J. Chem. Inf. Model..
[29] S. Brady,et al. Design and synthesis of a series of potent and orally bioavailable noncovalent thrombin inhibitors that utilize nonbasic groups in the P1 position. , 1998, Journal of medicinal chemistry.
[30] Michael K. Gilson,et al. Thermodynamics of Water in an Enzyme Active Site: Grid-Based Hydration Analysis of Coagulation Factor Xa , 2014, Journal of chemical theory and computation.
[31] A. Kovalenko. Molecular theory of solvation: Methodology summary and illustrations , 2015 .
[32] S. Kast,et al. Fast prediction of hydration free energies from molecular interaction fields. , 2001, Journal of molecular graphics & modelling.
[33] Ricardo L. Mancera,et al. WaterScore: a novel method for distinguishing between bound and displaceable water molecules in the crystal structure of the binding site of protein-ligand complexes , 2003, Journal of molecular modeling.
[34] Matthias Rarey,et al. Towards an Integrated Description of Hydrogen Bonding and Dehydration: Decreasing False Positives in Virtual Screening with the HYDE Scoring Function , 2008, ChemMedChem.
[35] David S. Wishart,et al. Role of Water in Ligand Binding to Maltose-Binding Protein: Insight from a New Docking Protocol Based on the 3D-RISM-KH Molecular Theory of Solvation , 2015, J. Chem. Inf. Model..
[36] Mike C. Payne,et al. Assessing the Accuracy of Inhomogeneous Fluid Solvation Theory in Predicting Hydration Free Energies of Simple Solutes , 2013, The journal of physical chemistry. B.
[37] Philip M. Dean,et al. Hydration in drug design. 2. Influence of local site surface shape on water binding , 1995, J. Comput. Aided Mol. Des..
[38] A. Schmidt,et al. High Resolution Structures of p-Aminobenzamidine- and Benzamidine-VIIa/Soluble Tissue Factor , 2006, Journal of Biological Chemistry.
[39] S. Wold. Cross-Validatory Estimation of the Number of Components in Factor and Principal Components Models , 1978 .
[40] Stefan M. Kast,et al. Parametrization Strategy for the MolFESD Concept: Quantitative Surface Representation of Local Hydrophobicity , 2003, J. Chem. Inf. Comput. Sci..
[41] Gerhard Klebe,et al. Relibase: design and development of a database for comprehensive analysis of protein-ligand interactions. , 2003, Journal of molecular biology.
[42] Sébastien Maignan,et al. Molecular structures of human factor Xa complexed with ketopiperazine inhibitors: preference for a neutral group in the S1 pocket. , 2003, Journal of medicinal chemistry.
[43] Stefan M. Kast,et al. Prediction of tautomer ratios by embedded-cluster integral equation theory , 2010, J. Comput. Aided Mol. Des..
[44] PatrickY.-S. Lam,et al. Rational design of potent, bioavailable, nonpeptide cyclic ureas as HIV protease inhibitors. , 1994, Science.
[45] Richard H. Henchman. Free energy of liquid water from a computer simulation via cell theory. , 2007, The Journal of chemical physics.
[46] Stefan M. Kast,et al. The SAMPL5 challenge for embedded-cluster integral equation theory: solvation free energies, aqueous pKa, and cyclohexane–water log D , 2016, Journal of Computer-Aided Molecular Design.
[47] P. Diaconis,et al. Computer-Intensive Methods in Statistics , 1983 .
[48] Fumio Hirata,et al. Placevent: An algorithm for prediction of explicit solvent atom distribution—Application to HIV‐1 protease and F‐ATP synthase , 2012, J. Comput. Chem..
[49] B. Berne,et al. Role of the active-site solvent in the thermodynamics of factor Xa ligand binding. , 2008, Journal of the American Chemical Society.
[50] Philip M. Dean,et al. Hydration in drug design. 3. Conserved water molecules at the ligand-binding sites of homologous proteins , 1995, J. Comput. Aided Mol. Des..
[51] T. Morita,et al. Integral Equation for Pair Distribution Function , 1960 .
[52] U. Singh,et al. A NEW FORCE FIELD FOR MOLECULAR MECHANICAL SIMULATION OF NUCLEIC ACIDS AND PROTEINS , 1984 .
[53] Pietro Cozzini,et al. Mapping the energetics of water-protein and water-ligand interactions with the "natural" HINT forcefield: predictive tools for characterizing the roles of water in biomolecules. , 2006, Journal of molecular biology.
[54] Thomas A. Halgren,et al. Maximally diagonal force constants in dependent angle-bending coordinates. II. Implications for the design of empirical force fields , 1990 .
[55] D. E. Patterson,et al. Crossvalidation, Bootstrapping, and Partial Least Squares Compared with Multiple Regression in Conventional QSAR Studies , 1988 .
[56] H. Schwalbe,et al. Model development for the viral Kcv potassium channel. , 2009, Biophysical journal.
[57] Michael K Gilson,et al. Grid inhomogeneous solvation theory: hydration structure and thermodynamics of the miniature receptor cucurbit[7]uril. , 2012, The Journal of chemical physics.
[58] G. K. Dedzo,et al. Molecule–Surface Recognition between Heterocyclic Aromatic Compounds and Kaolinite in Toluene Investigated by Molecular Theory of Solvation and Thermodynamic and Kinetic Experiments , 2014 .
[59] J. Zielkiewicz,et al. Structural properties of hydration shell around various conformations of simple polypeptides. , 2010, The journal of physical chemistry. B.
[60] David Chandler,et al. Optimized Cluster Expansions for Classical Fluids. I. General Theory and Variational Formulation of the Mean Spherical Model and Hard Sphere Percus‐Yevick Equations , 1972 .
[61] H. Matter,et al. Structure-based design of amidinophenylurea-derivatives for factor VIIa inhibition. , 2004, Bioorganic & medicinal chemistry letters.
[62] Benoît Roux,et al. Solvation of complex molecules in a polar liquid: An integral equation theory , 1996 .
[63] Woody Sherman,et al. Contribution of Explicit Solvent Effects to the Binding Affinity of Small‐Molecule Inhibitors in Blood Coagulation Factor Serine Proteases , 2011, ChemMedChem.
[64] Robert Abel,et al. Motifs for molecular recognition exploiting hydrophobic enclosure in protein–ligand binding , 2007, Proceedings of the National Academy of Sciences.
[65] T. N. Bhat,et al. The Protein Data Bank , 2000, Nucleic Acids Res..
[66] Matthias Rarey,et al. A consistent description of HYdrogen bond and DEhydration energies in protein–ligand complexes: methods behind the HYDE scoring function , 2012, Journal of Computer-Aided Molecular Design.
[67] Johann Gasteiger,et al. Multivariate structure‐activity relationships between data from a battery of biological tests and an ensemble of structure descriptors: The PLS method , 1984 .
[68] Bin Ye,et al. Crystal structures of two potent nonamidine inhibitors bound to factor Xa. , 2002, Biochemistry.
[69] C. Craik,et al. Substrate specificity of trypsin investigated by using a genetic selection. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[70] D. Case,et al. Simple electrolyte solutions: comparison of DRISM and molecular dynamics results for alkali halide solutions. , 2013, The Journal of chemical physics.
[71] T. Halgren. MMFF VI. MMFF94s option for energy minimization studies , 1999, J. Comput. Chem..
[72] H. Matter,et al. Design, synthesis, and structure-activity relationship of a new class of amidinophenylurea-based factor VIIa inhibitors. , 2003, Bioorganic & medicinal chemistry letters.
[73] Hans Matter,et al. Design and quantitative structure-activity relationship of 3-amidinobenzyl-1H-indole-2-carboxamides as potent, nonchiral, and selective inhibitors of blood coagulation factor Xa. , 2002, Journal of medicinal chemistry.
[74] Hans Matter,et al. Structural requirements for factor Xa inhibition by 3-oxybenzamides with neutral P1 substituents: combining X-ray crystallography, 3D-QSAR, and tailored scoring functions. , 2005, Journal of medicinal chemistry.
[75] Gerhard Klebe,et al. Methyl, Ethyl, Propyl, Butyl: Futile But Not for Water, as the Correlation of Structure and Thermodynamic Signature Shows in a Congeneric Series of Thermolysin Inhibitors , 2014, ChemMedChem.
[76] Themis Lazaridis,et al. Inhomogeneous Fluid Approach to Solvation Thermodynamics. 2. Applications to Simple Fluids , 1998 .
[77] R. Huber,et al. The influence of residue 190 in the S1 site of trypsin‐like serine proteases on substrate selectivity is universally conserved , 2002, FEBS letters.
[78] T. Lazaridis. Inhomogeneous Fluid Approach to Solvation Thermodynamics. 1. Theory , 1998 .
[79] S. Kast. Free energies from integral equation theories: enforcing path independence. , 2003, Physical review. E, Statistical, nonlinear, and soft matter physics.
[80] Philip M. Dean,et al. Hydration in drug design. 1. Multiple hydrogen-bonding features of water molecules in mediating protein-ligand interactions , 1995, J. Comput. Aided Mol. Des..
[81] L. Mueller,et al. Discovery of novel P1 groups for coagulation factor VIIa inhibition using fragment-based screening. , 2015, Journal of medicinal chemistry.
[82] S. Kast,et al. Closed-form expressions of the chemical potential for integral equation closures with certain bridge functions. , 2008, The Journal of chemical physics.
[83] Klaus R. Liedl,et al. Enthalpic and Entropic Contributions to Hydrophobicity , 2016, Journal of chemical theory and computation.
[84] W. Goddard,et al. Two-phase thermodynamic model for efficient and accurate absolute entropy of water from molecular dynamics simulations. , 2010, The journal of physical chemistry. B.
[85] Fumio Hirata,et al. Potentials of mean force of simple ions in ambient aqueous solution. I. Three-dimensional reference interaction site model approach , 2000 .