Orthogonal sampling in free‐energy calculations of residue mutations in a tripeptide: TI versus λ‐LEUS
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[1] Christian Habermann,et al. Multidimensional Spline Interpolation: Theory and Applications , 2007 .
[2] A. Laio,et al. Free-energy landscape for beta hairpin folding from combined parallel tempering and metadynamics. , 2006, Journal of the American Chemical Society.
[3] Markus Christen,et al. Architecture, implementation and parallelisation of the GROMOS software for biomolecular simulation , 2012, Comput. Phys. Commun..
[4] Philippe H Hünenberger,et al. Ball-and-Stick Local Elevation Umbrella Sampling: Molecular Simulations Involving Enhanced Sampling within Conformational or Alchemical Subspaces of Low Internal Dimensionalities, Minimal Irrelevant Volumes, and Problem-Adapted Geometries. , 2010, Journal of chemical theory and computation.
[5] Wilfred F. van Gunsteren,et al. A generalized reaction field method for molecular dynamics simulations , 1995 .
[6] M. Tuckerman,et al. An Adiabatic Molecular Dynamics Method for the Calculation of Free Energy Profiles , 2002 .
[7] C. Jarzynski. Equilibrium free-energy differences from nonequilibrium measurements: A master-equation approach , 1997, cond-mat/9707325.
[8] Hisashi Okumura,et al. Replica-Permutation Method with the Suwa-Todo Algorithm beyond the Replica-Exchange Method. , 2012, Journal of chemical theory and computation.
[9] H. Berendsen,et al. Interaction Models for Water in Relation to Protein Hydration , 1981 .
[10] M. Karplus,et al. Analysis of Coupling Schemes in Free Energy Simulations: A Unified Description of Nonbonded Contributions to Solvation Free Energies , 1996 .
[11] Stefan Boresch,et al. Alchemical free energy calculations and multiple conformational substates. , 2005, The Journal of chemical physics.
[12] G. Kell,et al. Precise representation of volume properties of water at one atmosphere , 1967 .
[13] David L Mobley,et al. Small Molecule Solvation Free Energy: Enhanced Conformational Sampling Using Expanded Ensemble Molecular Dynamics Simulation. , 2011, Journal of chemical theory and computation.
[14] M. Parrinello,et al. Well-tempered metadynamics: a smoothly converging and tunable free-energy method. , 2008, Physical review letters.
[15] Christophe Chipot,et al. Exploring the free-energy landscape of a short peptide using an average force. , 2005, The Journal of chemical physics.
[16] Chris Oostenbrink,et al. Comparison of thermodynamic integration and Bennett acceptance ratio for calculating relative protein‐ligand binding free energies , 2013, J. Comput. Chem..
[17] Philippe H. Hünenberger,et al. Using the local elevation method to construct optimized umbrella sampling potentials: Calculation of the relative free energies and interconversion barriers of glucopyranose ring conformers in water , 2010, J. Comput. Chem..
[18] H. Berendsen,et al. Simulations of Proteins in Water a , 1986, Annals of the New York Academy of Sciences.
[19] C. Jarzynski. Nonequilibrium Equality for Free Energy Differences , 1996, cond-mat/9610209.
[20] Adrian E Roitberg,et al. Optimization of Umbrella Sampling Replica Exchange Molecular Dynamics by Replica Positioning. , 2013, Journal of chemical theory and computation.
[21] Bruce Tidor,et al. Simulated annealing on free energy surfaces by a combined molecular dynamics and Monte Carlo approach , 1993 .
[22] M. Tuckerman,et al. On the use of the adiabatic molecular dynamics technique in the calculation of free energy profiles , 2002 .
[23] Michael R Shirts,et al. Identifying low variance pathways for free energy calculations of molecular transformations in solution phase. , 2011, The Journal of chemical physics.
[24] Chris Oostenbrink,et al. Free‐energy differences between states with different conformational ensembles , 2013, J. Comput. Chem..
[25] Charles L. Brooks,et al. λ‐dynamics: A new approach to free energy calculations , 1996 .
[26] Andrew S. Paluch,et al. Efficient Solvation Free Energy Calculations of Amino Acid Analogs by Expanded Ensemble Molecular Simulation. , 2011, Journal of chemical theory and computation.
[27] Stefan Bruckner,et al. Efficiency of alchemical free energy simulations. II. Improvements for thermodynamic integration , 2011, J. Comput. Chem..
[28] Conrad Shyu,et al. Reducing the bias and uncertainty of free energy estimates by using regression to fit thermodynamic integration data , 2009, J. Comput. Chem..
[29] Y. Sugita,et al. Replica-exchange molecular dynamics method for protein folding , 1999 .
[30] Jennifer L. Knight,et al. Multi-Site λ-dynamics for simulated Structure-Activity Relationship studies. , 2011, Journal of chemical theory and computation.
[31] Wei Yang,et al. Simultaneous escaping of explicit and hidden free energy barriers: application of the orthogonal space random walk strategy in generalized ensemble based conformational sampling. , 2009, The Journal of chemical physics.
[32] Wei Yang,et al. Random walk in orthogonal space to achieve efficient free-energy simulation of complex systems , 2008, Proceedings of the National Academy of Sciences.
[33] H. Grubmüller,et al. Constant pH Molecular Dynamics in Explicit Solvent with λ-Dynamics , 2011, Journal of chemical theory and computation.
[34] J. A. Barker,et al. Monte Carlo studies of the dielectric properties of water-like models , 1973 .
[35] Michael R Shirts,et al. Linear Basis Function Approach to Efficient Alchemical Free Energy Calculations. 1. Removal of Uncharged Atomic Sites. , 2014, Journal of chemical theory and computation.
[36] H. Berendsen,et al. Molecular dynamics with coupling to an external bath , 1984 .
[37] Aziz Ghoufi,et al. Calculation of the absolute thermodynamic properties of association of host-guest systems from the intermolecular potential of mean force. , 2006, The Journal of chemical physics.
[38] Noah S. Bieler,et al. On the ambiguity of conformational states: A B&S-LEUS simulation study of the helical conformations of decaalanine in water. , 2015, The Journal of chemical physics.
[39] J. Kirkwood. Statistical Mechanics of Fluid Mixtures , 1935 .
[40] Chris Oostenbrink,et al. Protein-Ligand Binding from Distancefield Distances and Hamiltonian Replica Exchange Simulations. , 2013, Journal of chemical theory and computation.
[41] Roberto D. Lins,et al. A new GROMOS force field for hexopyranose‐based carbohydrates , 2005, J. Comput. Chem..
[42] Benoît Roux,et al. Calculation of Free Energy Landscape in Multi-Dimensions with Hamiltonian-Exchange Umbrella Sampling on Petascale Supercomputer. , 2012, Journal of chemical theory and computation.
[43] G. Ciccotti,et al. Numerical Integration of the Cartesian Equations of Motion of a System with Constraints: Molecular Dynamics of n-Alkanes , 1977 .
[44] Stefan Boresch,et al. The Role of Bonded Terms in Free Energy Simulations. 2. Calculation of Their Influence on Free Energy Differences of Solvation , 1999 .
[45] Wilfred F van Gunsteren,et al. Sampling of rare events using hidden restraints. , 2006, The journal of physical chemistry. B.
[46] Arnaud Blondel,et al. Ensemble variance in free energy calculations by thermodynamic integration: Theory, optimal “Alchemical” path, and practical solutions , 2004, J. Comput. Chem..
[47] M. Klein,et al. Nosé-Hoover chains : the canonical ensemble via continuous dynamics , 1992 .
[48] David L Mobley,et al. Nonlinear scaling schemes for Lennard-Jones interactions in free energy calculations. , 2007, The Journal of chemical physics.
[49] Stefan Boresch,et al. THE ROLE OF BONDED TERMS IN FREE ENERGY SIMULATIONS : 1. THEORETICAL ANALYSIS , 1999 .
[50] Helmut Grubmüller,et al. Correction to Constant pH Molecular Dynamics in Explicit Solvent with λ-Dynamics , 2013, Journal of chemical theory and computation.
[51] John D. Hunter,et al. Matplotlib: A 2D Graphics Environment , 2007, Computing in Science & Engineering.
[52] Xiangqian Hu,et al. λ-Meta Dynamics Approach To Compute Absolute Solvation Free Energy. , 2011, The journal of physical chemistry letters.
[53] Wilfred F van Gunsteren,et al. Practical Aspects of Free-Energy Calculations: A Review. , 2014, Journal of chemical theory and computation.
[54] Helmut Grubmüller,et al. Linear‐scaling soft‐core scheme for alchemical free energy calculations , 2011, J. Comput. Chem..
[55] M. Gilson,et al. The statistical-thermodynamic basis for computation of binding affinities: a critical review. , 1997, Biophysical journal.
[56] Andrew E. Torda,et al. Local elevation: A method for improving the searching properties of molecular dynamics simulation , 1994, J. Comput. Aided Mol. Des..
[57] Bergström,et al. Large-pT production of D-wave quarkonium states at hadron colliders. , 1992, Physical review. D, Particles and fields.
[58] Hao Hu,et al. Combine umbrella sampling with integrated tempering method for efficient and accurate calculation of free energy changes of complex energy surface. , 2014, The Journal of chemical physics.
[59] Wilfred F. van Gunsteren,et al. New functionalities in the GROMOS biomolecular simulation software , 2012, J. Comput. Chem..
[60] Markus Christen,et al. On searching in, sampling of, and dynamically moving through conformational space of biomolecular systems: A review , 2008, J. Comput. Chem..
[61] Charles L. Brooks,et al. Applying efficient implicit nongeometric constraints in alchemical free energy simulations , 2011, J. Comput. Chem..
[62] Irwin Oppenheim,et al. Statistical Mechanical Theory of Transport Processes. VII. The Coefficient of Thermal Conductivity of Monatomic Liquids , 1954 .
[63] Kira A Armacost,et al. Biasing Potential Replica Exchange Multisite λ-Dynamics for Efficient Free Energy Calculations. , 2015, Journal of chemical theory and computation.
[64] David L Mobley,et al. The Confine-and-Release Method: Obtaining Correct Binding Free Energies in the Presence of Protein Conformational Change. , 2007, Journal of chemical theory and computation.
[65] Wei Yang,et al. Practically Efficient and Robust Free Energy Calculations: Double-Integration Orthogonal Space Tempering. , 2012, Journal of chemical theory and computation.
[66] Wilfred F. van Gunsteren,et al. Basic ingredients of free energy calculations: A review , 2009, J. Comput. Chem..
[67] Charles L. Brooks,et al. λ‐Dynamics free energy simulation methods , 2009, J. Comput. Chem..
[68] Hisashi Okumura,et al. Hamiltonian replica‐permutation method and its applications to an alanine dipeptide and amyloid‐β(29–42) peptides , 2013, J. Comput. Chem..
[69] William L. Jorgensen,et al. Efficient computation of absolute free energies of binding by computer simulations. Application to the methane dimer in water , 1988 .
[70] Stefan Bruckner,et al. Efficiency of alchemical free energy simulations. I. A practical comparison of the exponential formula, thermodynamic integration, and Bennett's acceptance ratio method , 2011, J. Comput. Chem..
[71] A. Mark,et al. Avoiding singularities and numerical instabilities in free energy calculations based on molecular simulations , 1994 .
[72] Noah S. Bieler,et al. Multistate λ-local-elevation umbrella-sampling (MS-λ-LEUS): method and application to the complexation of cations by crown ethers. , 2015, Journal of chemical theory and computation.
[73] Noah S Bieler,et al. Local Elevation Umbrella Sampling Applied to the Calculation of Alchemical Free-Energy Changes via λ-Dynamics: The λ-LEUS Scheme. , 2014, Journal of chemical theory and computation.
[74] S. Takada,et al. On the Hamiltonian replica exchange method for efficient sampling of biomolecular systems: Application to protein structure prediction , 2002 .
[75] Wei Yang,et al. A divide-and-conquer strategy to improve diffusion sampling in generalized ensemble simulations. , 2008, The Journal of chemical physics.
[76] Chris Oostenbrink,et al. Optimization of replica exchange molecular dynamics by fast mimicking. , 2007, The Journal of chemical physics.
[77] J. Kirkwood. Quantum Statistics of Almost Classical Assemblies , 1933 .
[78] R. Zwanzig. High‐Temperature Equation of State by a Perturbation Method. I. Nonpolar Gases , 1954 .
[79] Jozef Hritz,et al. Hamiltonian replica exchange molecular dynamics using soft-core interactions. , 2008, The Journal of chemical physics.
[80] Wonpil Im,et al. Theory of Adaptive Optimization for Umbrella Sampling , 2014, Journal of chemical theory and computation.
[81] Alan E. Mark,et al. Estimating the Relative Free Energy of Different Molecular States with Respect to a Single Reference State , 1996 .
[82] Wilfred F van Gunsteren,et al. Multiple free energies from a single simulation: extending enveloping distribution sampling to nonoverlapping phase-space distributions. , 2008, The Journal of chemical physics.
[83] Martin Zacharias,et al. Adaptive Biasing Combined with Hamiltonian Replica Exchange to Improve Umbrella Sampling Free Energy Simulations. , 2014, Journal of chemical theory and computation.
[84] Wilfred F van Gunsteren,et al. Biomolecular modeling: Goals, problems, perspectives. , 2006, Angewandte Chemie.
[85] Wilfred F van Gunsteren,et al. Enveloping distribution sampling: a method to calculate free energy differences from a single simulation. , 2007, The Journal of chemical physics.
[86] G. Torrie,et al. Nonphysical sampling distributions in Monte Carlo free-energy estimation: Umbrella sampling , 1977 .
[87] Noah S Bieler,et al. Communication: estimating the initial biasing potential for λ-local-elevation umbrella-sampling (λ-LEUS) simulations via slow growth. , 2014, The Journal of chemical physics.
[88] Wilfred F. van Gunsteren,et al. Experimental and Theoretical Approach to Hydrogen-Bonded Diastereomeric Interactions in a Model Complex , 1997 .
[89] S. Gorard. REVISITING A 90-YEAR-OLD DEBATE: THE ADVANTAGES OF THE MEAN DEVIATION , 2005 .
[90] Volodymyr Babin,et al. Adaptively biased molecular dynamics for free energy calculations. , 2007, The Journal of chemical physics.
[91] J. Andrew McCammon,et al. Accelerated Adaptive Integration Method , 2014, The journal of physical chemistry. B.
[92] Tim N. Heinz,et al. Comparison of four methods to compute the dielectric permittivity of liquids from molecular dynamics simulations , 2001 .
[93] Michael R. Shirts,et al. Replica exchange and expanded ensemble simulations as Gibbs sampling: simple improvements for enhanced mixing. , 2011, The Journal of chemical physics.
[94] Tetsuya Morishita,et al. Fluctuation formulas in molecular-dynamics simulations with the weak coupling heat bath , 2000 .