Packing optimization for automated generation of complex system's initial configurations for molecular dynamics and docking

被引:624
作者
Martínez, JM
Martínez, L
机构
[1] Univ Estadual Campinas, UNICAMP, IMECC, Dept Appl Math, BR-13081970 Campinas, SP, Brazil
[2] Univ Estadual Campinas, Inst Chem, BR-13081970 Campinas, SP, Brazil
关键词
large-scale optimization; box constraints; molecular dynamics; docking;
D O I
10.1002/jcc.10216
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Molecular Dynamics is a powerful methodology for the comprehension at molecular level of many chemical and biochemical systems. The theories and techniques developed for structural and thermodynamic analyses are well established, and many software packages are available. However, designing starting configurations for dynamics can be cumbersome. Easily generated regular lattices can be used when simple liquids or mixtures are studied. However, for complex mixtures, polymer solutions or solid adsorbed liquids (for example) this approach is inefficient, and it turns out to be very hard to obtain an adequate coordinate file. In this article, the problem of obtaining an adequate initial configuration is treated as a "packing" problem and solved by an optimization procedure. The initial configuration is chosen in such a way that the minimum distance between atoms of different molecules is greater than a fixed tolerance. The optimization uses a well-known algorithm for box-constrained minimization. Applications are given for biomolecule solvation, many-component mixtures, and interfaces. This approach can reduce the work of designing starting configurations from days or weeks to few minutes or hours, in an automated fashion. Packing optimization is also shown to be a powerful methodology for space search in docking of small ligands to proteins. This is demonstrated by docking of the thyroid hormone to its nuclear receptor. (C) 2003 Wiley Periodicals, Inc.
引用
收藏
页码:819 / 825
页数:7
相关论文
共 32 条
[11]   ON THE MAXIMIZATION OF A CONCAVE QUADRATIC FUNCTION WITH BOX CONSTRAINTS [J].
FRIEDLANDER, A ;
MARTINEZ, JM .
SIAM JOURNAL ON OPTIMIZATION, 1994, 4 (01) :177-192
[12]   A NEW TRUST REGION ALGORITHM FOR BOUND CONSTRAINED MINIMIZATION [J].
FRIEDLANDER, A ;
MARTINEZ, JM ;
SANTOS, SA .
APPLIED MATHEMATICS AND OPTIMIZATION, 1994, 30 (03) :235-266
[13]   Development and testing of the OPLS all-atom force field on conformational energetics and properties of organic liquids [J].
Jorgensen, WL ;
Maxwell, DS ;
TiradoRives, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (45) :11225-11236
[14]  
Jorgensen WL, 1998, THEOCHEM-J MOL STRUC, V424, P145, DOI 10.1016/S0166-1280(97)00237-6
[15]   Validation of an augmented lagrangian algorithm with a Gauss-Newton Hessian approximation using a set of hard-spheres problems [J].
Krejic, N ;
Martínez, JM ;
Mello, M ;
Pilotta, EA .
COMPUTATIONAL OPTIMIZATION AND APPLICATIONS, 2000, 16 (03) :247-263
[16]   Newton's method for large bound-constrained optimization problems [J].
Lin, CJ ;
Moré, JJ .
SIAM JOURNAL ON OPTIMIZATION, 1999, 9 (04) :1100-1127
[17]   ON THE LIMITED MEMORY BFGS METHOD FOR LARGE-SCALE OPTIMIZATION [J].
LIU, DC ;
NOCEDAL, J .
MATHEMATICAL PROGRAMMING, 1989, 45 (03) :503-528
[18]  
MARTINEZ L, UNPUB
[19]  
MARTINS LO, UNPUB
[20]   A COMPREHENSIVE STUDY OF THE ROTATIONAL ENERGY PROFILES OF ORGANIC-SYSTEMS BY AB-INITIO MO THEORY, FORMING A BASIS FOR PEPTIDE TORSIONAL PARAMETERS [J].
MAXWELL, DS ;
TIRADORIVES, J ;
JORGENSEN, WL .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 1995, 16 (08) :984-1010