DocumentCode :
2114516
Title :
Generation of atomic four-body statistical potentials derived from the delaunay tessellation of protein structures
Author :
Masso, M.
Author_Institution :
Lab. for Struct. Bioinf., George Mason Univ., Manassas, VA, USA
fYear :
2012
fDate :
Aug. 28 2012-Sept. 1 2012
Firstpage :
6321
Lastpage :
6324
Abstract :
Delaunay tessellation of the atomic coordinates for a crystallographic protein structure yields an aggregate of non-overlapping and space-filling irregular tetrahedral simplices. The vertices of each simplex objectively identify a quadruplet of nearest neighbor atoms in the protein. Here we apply Delaunay tessellation to 1417 high-resolution structures of single chains that share low sequence identity, for the purpose of determining the relative frequencies of occurrence for all possible nearest neighbor atomic quadruplet types. Alternative distributions are explored by varying two fundamental parameters: atomic alphabet selection and cutoff length for admissible simplex edges. The distributions are then converted to four-body potential functions by implementing the inverted Boltzmann principle, which requires calculating the distribution of the reference state. Two alternative definitions for the reference state are presented, which introduces a third parameter, and we derive and compare an array of such potential functions. These knowledge-based statistical potentials based on higher-order interactions complement and generalize the more commonly encountered atom-pair potentials, for which a number of approaches are described in the literature.
Keywords :
biology computing; mesh generation; molecular biophysics; molecular configurations; proteins; statistical analysis; Delaunay tessellation; admissible simplex edges; aggregate; atom-pair potentials; atomic alphabet selection; atomic coordinates; atomic four-body statistical potentials; crystallographic protein structure; cutoff length; four-body potential functions; high-resolution structure; higher-order interactions; inverted Boltzmann principle; knowledge-based statistical potentials; nearest neighbor atomic quadruplet; nearest neighbor atoms; reference state distribution; sequence identity; single chains; space-filling irregular tetrahedral simplices; Arrays; Atomic clocks; Computational modeling; Cutoff frequency; Knowledge based systems; Periodic structures; Proteins; Models, Chemical; Protein Conformation; Proteins;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
Conference_Location :
San Diego, CA
ISSN :
1557-170X
Print_ISBN :
978-1-4244-4119-8
Electronic_ISBN :
1557-170X
Type :
conf
DOI :
10.1109/EMBC.2012.6347439
Filename :
6347439
Link To Document :
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