Acta Crystallographica Section A

Foundations of Crystallography

Volume 58, Part 5 (September 2002)


research papers



Acta Cryst. (2002). A58, 464-472    [ doi:10.1107/S0108767302010991 ]

Aspherical-atom scattering factors from molecular wave functions. 1. Transferability and conformation dependence of atomic electron densities of peptides within the multipole formalism

T. Koritsanszky, A. Volkov and P. Coppens

Abstract: In this study, the feasibility of building a database of theoretical atomic deformation density parameters applicable to the construction of the densities of biomacromolecules and to the interpretation of their X-ray diffraction data is discussed. The procedure described involves generation of valence-only structure factors of tripeptides calculated from theoretical densities at the B3LYP level and the refinement of multipole parameters against these simulated data. Our results so far indicate that the backbone pseudoatoms extracted in such a way are highly transferable and fairly invariant with respect to rotations around single bonds in the peptide framework. The ultimate goal is to use the aspherical-atom database for improved macromolecular refinements that are based on high-resolution data and for prediction of electrostatic properties of larger molecules.

Keywords: atomic deformation density; biomacromolecules; multipole analysis; aspherical atom; scattering factors; atoms in molecules.

 bibliographic record in  format

  Find reference:   Volume   Page   
  Search:     From   to      Advanced search

Copyright © International Union of Crystallography
IUCr Webmaster