The electrostatic potential for the phosphodiester group determined from X‐ray diffraction
- 1 September 1992
- journal article
- Published by Wiley in Biopolymers
- Vol. 32 (9) , 1141-1154
- https://doi.org/10.1002/bip.360320903
Abstract
The charge density distribution in the crystal structure of ammonium dimethylphosphate at 123 K has been determined from x‐ray diffraction data (MoKα) using 8437 reflections with sin θ/λ < 1.33.Å−1 [NH · (CH3)2PO , Mr = 143.08, monoclinic, P21/c, a = 10.007(1), b = 6.926(1), c = 9.599(2) Å, β = 105.40(1) °, V = 641.4(3) Å3, Z = 4, F000 = 304, Dx = 1.4815 g· cm−3, µ = 3.726 cm−1]. Least‐squares structure refinement assuming Stewart's rigid pseudoatom model (variables including Slater‐type radial exponents and electron populations for multipole terms extending to octapoles for C, N, O, and P, and dipoles for H) gave R(F2) = 0.039 for all reflections. The dimethylphosphate anion is in the gauche‐gauche conformation and has approximate twofold symmetry. One phosphoryl O atom forms three hydrogen bonds and the other forms one. Neither of the ester O atoms is hydrogen bonded. For the dimethylphosphate anion isolated from the crystal structure, a map of the electrostatic potential obtained using the pseudoatom charge parameters shows that the phosphoryl O atoms are considerably more electronegative than the ester O atoms. The electrostatic potential distribution obtained in this way has been fitted by least squares to a system of atom‐centered point charges. The potential calculated from these point charges agrees with the experimental result. It also agrees reasonably well with potentials obtained from three other systems of point charges that are widely used as part of the semiempirical force field for molecular mechanics and molecular dynamics calculations involving nucleic acids. © 1992 John Wiley & Sons, Inc.Keywords
This publication has 21 references indexed in Scilit:
- Structure and thermal vibrations of adenosine from neutron diffraction data at 123 KActa crystallographica Section B, Structural science, crystal engineering and materials, 1991
- The structure and thermal motion of phosphorylethanolamine at 122 K from neutron diffractionActa crystallographica Section B, Structural science, crystal engineering and materials, 1984
- Electrostatic properties of phosphorylethanolamine at 123 K from crystal diffractionActa crystallographica Section B, Structural science, crystal engineering and materials, 1984
- CHARMM: A program for macromolecular energy, minimization, and dynamics calculationsJournal of Computational Chemistry, 1983
- The neutron structure of and thermal motion in γ-aminobutyric acid (GABA) at 122 KActa crystallographica Section B, Structural science, crystal engineering and materials, 1983
- The charge density in imidazole by X-ray diffraction at 103 and 293 KActa Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 1982
- Removal of the white-radiation background from data collected with, β-filtered MoKα, and AgKα X-raysActa Crystallographica Section A, 1975
- Model conformational study of nucleic acid phosphate ester bonds. Torsional potential of dimethyl phosphate monoanionJournal of the American Chemical Society, 1973
- On the rigid-body motion of molecules in crystalsActa Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 1968
- High-speed computation of the absorption correction for single-crystal diffraction measurementsActa Crystallographica, 1957