Detailed knowledge of the molecular mechanisms that control the spectral properties in the rhodopsin protein family is important for understanding the functions of these photoreceptors and for the rational design of artificial photosensitive proteins. Here we used a high-level ab initio QM/MM method to investigate the mechanism of spectral tuning in the chloride-bound and anion-free forms of halorhodopsin from Natronobacterium pharaonis (phR) and the interprotein spectral shift between them. We demonstrate that the chloride ion tunes the spectral properties of phR via two distinct mechanisms: (i) electrostatic interaction with the chromophore, which results in a 95 nm difference between the absorption maxima of the two forms, and (ii) induc...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
Halorhodopsin (HR) functions as a light-driven inward Cl- pump. The Cl- transfer process of HR from ...
We examine here the role of the red, green, and blue human opsin structures in modulating the absorp...
The spectral tuning of halorhodopsin from Halobacterium salinarum (<i>s</i>hR) during anion transpor...
ABSTRACT: Sensory rhodopsin II (SRII) is unique among the archaeal rhodopsins in having an absorptio...
We present a structure-based theory of the long-wavelength (red/green) color tuning in visual rhodop...
ABSTRACT The color tuningmechanism of the rhodopsin protein family has been in the focus of research...
Color tuning in animal and microbial rhodopsins has attracted the interest of many researchers, as t...
We examined the shift of absorption maxima between the chlamydomonas-type channelrhodopsins (ChRs) a...
We demonstrate that "brute force" quantum-mechanics/molecular- mechanics computations based on ab in...
Halorhodopsin (HR), the light-driven chloride transport pigment of Halobacterium halobium, was bleac...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
AbstractHalorhodopsin from Natronomonas pharaonis (pHR) functions as a light-driven halide ion pump....
Retinal-binding proteins are found in all three domains of life: archaea, eubacteria and eukarya, an...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
Halorhodopsin (HR) functions as a light-driven inward Cl- pump. The Cl- transfer process of HR from ...
We examine here the role of the red, green, and blue human opsin structures in modulating the absorp...
The spectral tuning of halorhodopsin from Halobacterium salinarum (<i>s</i>hR) during anion transpor...
ABSTRACT: Sensory rhodopsin II (SRII) is unique among the archaeal rhodopsins in having an absorptio...
We present a structure-based theory of the long-wavelength (red/green) color tuning in visual rhodop...
ABSTRACT The color tuningmechanism of the rhodopsin protein family has been in the focus of research...
Color tuning in animal and microbial rhodopsins has attracted the interest of many researchers, as t...
We examined the shift of absorption maxima between the chlamydomonas-type channelrhodopsins (ChRs) a...
We demonstrate that "brute force" quantum-mechanics/molecular- mechanics computations based on ab in...
Halorhodopsin (HR), the light-driven chloride transport pigment of Halobacterium halobium, was bleac...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
AbstractHalorhodopsin from Natronomonas pharaonis (pHR) functions as a light-driven halide ion pump....
Retinal-binding proteins are found in all three domains of life: archaea, eubacteria and eukarya, an...
Retinal is the light-absorbing biochromophore responsible for the activation of vision pigments and ...
Halorhodopsin (HR) functions as a light-driven inward Cl- pump. The Cl- transfer process of HR from ...
We examine here the role of the red, green, and blue human opsin structures in modulating the absorp...