WOS:000307900800009International audienceWe look at the possibility to compute and understand the color change occurring upon mutation of a photochromic protein. Accordingly, ab initio multiconfigurational quantum chemical methods are used to construct basic quantum-mechanics/molecular-mechanics (QM/MM) models for a small mutant library of the sensory rhodopsin of Anabaena (Nostoc) sp. PCC7120 cyanobacterium. Together with the wild-type forms, a set of 26 absorption maxima spanning a ca. 80 nm range is obtained. We show that these models can be used to capture the electrostatic change controlling the computed color variation and the change in the ionization of specific side chains
We examined the shift of absorption maxima between the chlamydomonas-type channelrhodopsins (ChRs) a...
The engineering of microbial rhodopsins with enhanced fluorescence is of great importance in the exp...
We examine here the role of the red, green, and blue human opsin structures in modulating the absorp...
WOS:000307900800009International audienceWe look at the possibility to compute and understand the co...
We demonstrate that "brute force" quantum-mechanics/molecular- mechanics computations based on ab in...
While the light-induced population dynamics of different photoresponsive proteins has been investiga...
Rhodopsin proteins are found in a wide range of organisms and perform a variety of functions. Verteb...
The implementation of multiconfigurational quantum chemistry methods into a quantum-mechanics/molecu...
Designing and testing biomimetic switches: Multireference perturbation theory is used to model a lig...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...
Color tuning in animal and microbial rhodopsins has attracted the interest of many researchers, as t...
The primary event in vision is induced by the ultrafast photoisomerization of rhodopsin, the dim-lig...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
We examined the shift of absorption maxima between the chlamydomonas-type channelrhodopsins (ChRs) a...
The engineering of microbial rhodopsins with enhanced fluorescence is of great importance in the exp...
We examine here the role of the red, green, and blue human opsin structures in modulating the absorp...
WOS:000307900800009International audienceWe look at the possibility to compute and understand the co...
We demonstrate that "brute force" quantum-mechanics/molecular- mechanics computations based on ab in...
While the light-induced population dynamics of different photoresponsive proteins has been investiga...
Rhodopsin proteins are found in a wide range of organisms and perform a variety of functions. Verteb...
The implementation of multiconfigurational quantum chemistry methods into a quantum-mechanics/molecu...
Designing and testing biomimetic switches: Multireference perturbation theory is used to model a lig...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...
Color tuning in animal and microbial rhodopsins has attracted the interest of many researchers, as t...
The primary event in vision is induced by the ultrafast photoisomerization of rhodopsin, the dim-lig...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
We examined the shift of absorption maxima between the chlamydomonas-type channelrhodopsins (ChRs) a...
The engineering of microbial rhodopsins with enhanced fluorescence is of great importance in the exp...
We examine here the role of the red, green, and blue human opsin structures in modulating the absorp...