Title of article
Coarse-graining the electrostatic potential via distributed multipole expansions Original Research Article
Author/Authors
Apostol Gramada، نويسنده , , Philip E. Bourne، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
8
From page
1455
To page
1462
Abstract
Multipole expansions offer a natural path to coarse-graining the electrostatic potential. However, the validity of the expansion is restricted to regions outside a spherical enclosure of the distribution of charge and, therefore, not suitable for most applications that demand accurate representation at arbitrary positions around the molecule. We propose and demonstrate a distributed multipole expansion approach that resolves this limitation. We also provide a practical algorithm for the computational implementation of this approach. The method allows the partitioning of the charge distribution into subsystems so that the multipole expansion of each component of the partition, and therefore of their superposition, is valid outside an enclosing surface of the molecule of arbitrary shape. The complexity of the resulting coarse-grained model of electrostatic potential is dictated by the area of the molecular surface and therefore, for a typical three-dimensional molecule, it scale as image with N, the number of charges in the system. This makes the method especially useful for coarse-grained studies of biological systems consisting of many large macromolecules provided that the configuration of the individual molecules can be approximated as fixed.
Keywords
Distributed multipole analysis , Electrostatic potential , Molecular modeling , Multipole moments , Coarse-graining , Algorithms
Journal title
Computer Physics Communications
Serial Year
2011
Journal title
Computer Physics Communications
Record number
1138293
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