Electron density deformations provide new insights into the spectral shift of rhodopsins

J Comput Chem. 2013 Oct 30;34(28):2460-71. doi: 10.1002/jcc.23414. Epub 2013 Aug 26.

Abstract

Spectral shifts of rhodopsin, which are related to variations of the electron distribution in 11-cis-retinal, are investigated here using the method of deformed atoms in molecules. We found that systems carrying the M207R and S186W mutations display large perturbations of the π-conjugated system with respect to wild-type rhodopsins. These changes agree with the predicted behavior of the bond length alternation (BLA) and the blue shifts of vertical excitation energies of these systems. The effect of the planarity of the central and Schiff-base regions of retinal chain on the electronic structure of the chromophore is also investigated. By establishing nonlinear polynomial relations between BLA, chain distortions, and vertical excitation energies, we are also able to provide a semiquantitative approach for the understanding of the mechanisms regulating spectral shifts in rhodopsin and its mutants.

Keywords: electron density deformations; electronic structure; mutations; retinitis pigmentosa; rhodopsin.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cattle
  • Electrons*
  • Humans
  • Models, Molecular
  • Molecular Dynamics Simulation
  • Mutation
  • Retinaldehyde / chemistry*
  • Rhodopsin / chemistry*
  • Rhodopsin / genetics
  • Static Electricity

Substances

  • Rhodopsin
  • Retinaldehyde