Author:
Decherchi Sergio,Colmenares Jose,Catalano Chiara Eva,Spagnuolo Michela,Alexov Emil,Rocchia Walter
Abstract
AbstractThe definition of a molecular surface which is physically sound and computationally efficient is a very interesting and long standing problem in the implicit solvent continuum modeling of biomolecular systems as well as in the molecular graphics field. In this work, two molecular surfaces are evaluated with respect to their suitability for electrostatic computation as alternatives to the widely used Connolly-Richards surface: the blobby surface, an implicit Gaussian atom centered surface, and the skin surface. As figures of merit, we considered surface differentiability and surface area continuity with respect to atom positions, and the agreement with explicit solvent simulations. Geometric analysis seems to privilege the skin to the blobby surface, and points to an unexpected relationship between the non connectedness of the surface, caused by interstices in the solute volume, and the surface area dependence on atomic centers. In order to assess the ability to reproduce explicit solvent results, specific software tools have been developed to enable the use of the skin surface in Poisson-Boltzmann calculations with the DelPhi solver. The results indicate that the skin and Connolly surfaces have a comparable performance from this last point of view.
Subject
Physics and Astronomy (miscellaneous)
Reference45 articles.
1. SIMS: computation of a smooth invariant molecular surface
2. Discrete differential-geometry operators for triangulated 2-manifolds;Desbrun,2002
3. Analytical shape computation of macromolecules: I. molecular area and volume through alpha shape
4. Alkali halides in water: Ion-solvent correlations and ionion potentials of mean force at infinite dilution;Pettitt;J. Chem. Phys,5836
5. ReMESH: An Interactive Environment to Edit and Repair Triangle Meshes
Cited by
42 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献