g_mmpbsa-A GROMACS Tool for High-Throughput MM-PBSA Calculations

被引:3781
作者
Kumari, Rashmi [1 ]
Kumar, Rajendra [1 ]
Lynn, Andrew [1 ]
机构
[1] Jawaharlal Nehru Univ, Sch Computat & Integrat Sci, New Delhi 110067, India
[2] CSIR Open Source Drug Discovery Unit, Delhi 110001, India
关键词
FREE-ENERGY CALCULATIONS; BOLTZMANN SURFACE-AREA; LINEAR CONSTRAINT SOLVER; MOLECULAR-DYNAMICS; CONTINUUM SOLVENT; GENERALIZED BORN; VIBRATIONAL ENTROPY; AUTOMATED PROCEDURE; BINDING-ENERGIES; SOLVATION MODEL;
D O I
10.1021/ci500020m
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Molecular mechanics Poisson-Boltzmann surface area (MM-PBSA), a method to estimate interaction free energies, has been increasingly used in the study of biomolecular interactions. Recently, this method has also been applied as a scoring function in computational drug design. Here a new tool g_mmpbsa, which implements the MM-PBSA approach using subroutines written in-house or sourced from the GROMACS and APBS packages is described. g_mmpbsa was developed as part of the Open Source Drug Discovery (OSDD) consortium. Its aim is to integrate high-throughput molecular dynamics (MD) simulations with binding energy calculations. The tool provides options to select alternative atomic radii and different nonpolar solvation models including models based on the solvent accessible surface area (SASA), solvent accessible volume (SAV), and a model which contains both repulsive (SASA-SAV) and attractive components (described using a Weeks-Chandler-Andersen like integral method). We showcase the effectiveness of the tool by comparing the calculated interaction energy of 37 structurally diverse HIV-1 protease inhibitor complexes with their experimental binding free energies. The effect of varying several combinations of input parameters such as atomic radii, dielectric constant, grid resolution, solute solvent dielectric boundary definition, and nonpolar models was investigated. g_mmpbsa can also be used to estimate the energy contribution per residue to the binding energy. It has been used to identify those residues in HIV-1 protease that are most critical for binding a range of inhibitors.
引用
收藏
页码:1951 / 1962
页数:12
相关论文
共 106 条
[1]   On the calculation of entropy from covariance matrices of the atomic fluctuations [J].
Andricioaei, I ;
Karplus, M .
JOURNAL OF CHEMICAL PHYSICS, 2001, 115 (14) :6289-6292
[2]   Electrostatics of nanosystems: Application to microtubules and the ribosome [J].
Baker, NA ;
Sept, D ;
Joseph, S ;
Holst, MJ ;
McCammon, JA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (18) :10037-10041
[3]   Virtual Screening and Biological Evaluation of Inhibitors Targeting the XPA-ERCC1 Interaction [J].
Barakat, Khaled H. ;
Jordheim, Lars P. ;
Perez-Pineiro, Rolando ;
Wishart, David ;
Dumontet, Charles ;
Tuszynski, Jack A. .
PLOS ONE, 2012, 7 (12)
[4]   MOLECULAR-DYNAMICS WITH COUPLING TO AN EXTERNAL BATH [J].
BERENDSEN, HJC ;
POSTMA, JPM ;
VANGUNSTEREN, WF ;
DINOLA, A ;
HAAK, JR .
JOURNAL OF CHEMICAL PHYSICS, 1984, 81 (08) :3684-3690
[5]   VAN DER WAALS VOLUMES + RADII [J].
BONDI, A .
JOURNAL OF PHYSICAL CHEMISTRY, 1964, 68 (03) :441-+
[6]   Analyzing the Robustness of the MM/PBSA Free Energy Calculation Method: Application to DNA Conformational Transitions [J].
Brice, Allyn R. ;
Dominy, Brian N. .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2011, 32 (07) :1431-1440
[7]   CHARMM: The Biomolecular Simulation Program [J].
Brooks, B. R. ;
Brooks, C. L., III ;
Mackerell, A. D., Jr. ;
Nilsson, L. ;
Petrella, R. J. ;
Roux, B. ;
Won, Y. ;
Archontis, G. ;
Bartels, C. ;
Boresch, S. ;
Caflisch, A. ;
Caves, L. ;
Cui, Q. ;
Dinner, A. R. ;
Feig, M. ;
Fischer, S. ;
Gao, J. ;
Hodoscek, M. ;
Im, W. ;
Kuczera, K. ;
Lazaridis, T. ;
Ma, J. ;
Ovchinnikov, V. ;
Paci, E. ;
Pastor, R. W. ;
Post, C. B. ;
Pu, J. Z. ;
Schaefer, M. ;
Tidor, B. ;
Venable, R. M. ;
Woodcock, H. L. ;
Wu, X. ;
Yang, W. ;
York, D. M. ;
Karplus, M. .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2009, 30 (10) :1545-1614
[8]   Large-Scale Application of High-Throughput Molecular Mechanics with Poisson-Boltzmann Surface Area for Routine Physics-Based Scoring of Protein-Ligand Complexes [J].
Brown, Scott P. ;
Muchmore, Steven W. .
JOURNAL OF MEDICINAL CHEMISTRY, 2009, 52 (10) :3159-3165
[9]  
Bruccoleri RE, 1997, J COMPUT CHEM, V18, P268, DOI 10.1002/(SICI)1096-987X(19970130)18:2<268::AID-JCC11>3.0.CO
[10]  
2-E