Title :
An Algebraic Spline Model of Molecular Surfaces for Energetic Computations
Author :
Zhao, Wenqi ; Xu, Guoliang ; Bajaj, Chandrajit
Author_Institution :
Center for Comput. Visualization, Univ. of Texas at Austin, Austin, TX, USA
Abstract :
In this paper, we describe a new method to generate a smooth algebraic spline (AS) approximation of the molecular surface (MS) based on an initial coarse triangulation derived from the atomic coordinate information of the biomolecule, resident in the Protein data bank (PDB). Our method first constructs a triangular prism scaffold covering the PDB structure, and then generates a piecewise polynomial F on the Bernstein-Bezier (BB) basis within the scaffold. An ASMS model of the molecular surface is extracted as the zero contours of F, which is nearly C1 and has dual implicit and parametric representations. The dual representations allow us easily do the point sampling on the ASMS model and apply it to the accurate estimation of the integrals involved in the electrostatic solvation energy computations. Meanwhile comparing with the trivial piecewise linear surface model, fewer number of sampling points are needed for the ASMS, which effectively reduces the complexity of the energy estimation.
Keywords :
biological techniques; biology computing; molecular configurations; proteins; ASMS model; Bernstein-Bezier basis; PDB structure; algebraic spline model; atomic coordinate information; electrostatic solvation energy computations; energetic computations; molecular biophysics; molecular surfaces; piecewise linear surface model; protein data bank; scaffold; smooth algebraic spline approximation; Biological system modeling; Computational modeling; Electrostatics; Polynomials; Spline; Synthetic aperture sonar; Bernstein-Bezier basis; Polynomial splines; error bounds; molecular surfaces; prismatic scaffolds; rate of convergence.; solvation energetics; Algorithms; Computer Simulation; Databases, Protein; Linear Models; Protein Conformation; Proteins;
Journal_Title :
Computational Biology and Bioinformatics, IEEE/ACM Transactions on
DOI :
10.1109/TCBB.2011.81