AbstractThe energy storage and the molecular rearrangements due to the primary photochemical event in rhodopsin are investigated by using quantum mechanics/molecular mechanics hybrid methods in conjunction with high-resolution structural data of bovine visual rhodopsin. The analysis of the reactant and product molecular structures reveals the energy storage mechanism as determined by the detailed molecular rearrangements of the retinyl chromophore, including rotation of the ϕ(C11–C12) dihedral angle from −11° in the 11-cis isomer to −161° in the all-trans product, where the preferential sense of rotation is determined by the steric interactions between Ala-117 and the polyene chain at the C13 position, torsion of the polyene chain due to st...
ABSTRACT: The vibrational structure of the chromophore in the primary photoproduct of vision, bathor...
We investigate nuclear magnetic resonance (NMR) parameters of the rhodopsin chromophore in the dark ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
ABSTRACT The energy storage and the molecular rearrangements due to the primary photochemical event ...
AbstractThe energy storage and the molecular rearrangements due to the primary photochemical event i...
This Account addresses recent advances in the elucidation of the detailed molecular rearrangements d...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...
The primary photochemical reaction of the green-absorbing proteorhodopsin is studied by means of a h...
Abstract: We present a Car-Paninello ab initio molecular dynamics study of the retinylidene chromoph...
Retinal chromophores are the photoactive molecular units of visual and archaeal rhodopsins, an impor...
AbstractRetinal cis-trans isomerization and early relaxation steps have been studied in a 10-ns mole...
The photocycle of a reversible photoisomerizing rhodopsin mimic (M2) is investigated. This system, b...
Retinylidene proteins, also know as retinal proteins, are membrane-bound protein pigments that bind ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
AbstractThe photoisomerization reaction dynamics of a retinal chromophore in the visual receptor rho...
ABSTRACT: The vibrational structure of the chromophore in the primary photoproduct of vision, bathor...
We investigate nuclear magnetic resonance (NMR) parameters of the rhodopsin chromophore in the dark ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
ABSTRACT The energy storage and the molecular rearrangements due to the primary photochemical event ...
AbstractThe energy storage and the molecular rearrangements due to the primary photochemical event i...
This Account addresses recent advances in the elucidation of the detailed molecular rearrangements d...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...
The primary photochemical reaction of the green-absorbing proteorhodopsin is studied by means of a h...
Abstract: We present a Car-Paninello ab initio molecular dynamics study of the retinylidene chromoph...
Retinal chromophores are the photoactive molecular units of visual and archaeal rhodopsins, an impor...
AbstractRetinal cis-trans isomerization and early relaxation steps have been studied in a 10-ns mole...
The photocycle of a reversible photoisomerizing rhodopsin mimic (M2) is investigated. This system, b...
Retinylidene proteins, also know as retinal proteins, are membrane-bound protein pigments that bind ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
AbstractThe photoisomerization reaction dynamics of a retinal chromophore in the visual receptor rho...
ABSTRACT: The vibrational structure of the chromophore in the primary photoproduct of vision, bathor...
We investigate nuclear magnetic resonance (NMR) parameters of the rhodopsin chromophore in the dark ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...