Using X-ray crystallography, continuum electrostatic calculations, and molecular dynamics simulations, we have studied the structure, protonation behavior, and dynamics of the biliverdin chromophore and its molecular environment in a series of genetically engineered infrared fluorescent proteins (IFPs) based on the chromophore-binding domain of the <i>Deinococcus radiodurans</i> bacteriophytochrome. Our study suggests that the experimentally observed enhancement of fluorescent properties results from the improved rigidity and planarity of the biliverdin chromophore, in particular of the first two pyrrole rings neighboring the covalent linkage to the protein. We propose that the increases in the levels of both motion and bending of the chrom...
Fluorescent proteins are versatile tools for molecular imaging. In this study, we report a detailed ...
Phytochrome proteins regulate many photoresponses of plants and microorganisms. Light absorption cau...
Phytochromes constitute a class of photoreceptors that can be photoconverted between two stable stat...
Using X-ray crystallography, continuum electrostatic calculations, and molecular dynamics simulation...
International audienceUsing X-ray crystallography, continuum electrostatic calculations, and molecul...
Use of fluorescent proteins to study in vivo processes in mammals requires near-infrared (NIR) bioma...
Infrared fluorescent proteins (iRFPs) are potential candidates for deep-tissue in vivo imaging. Here...
Genetically encoded fluorescent markers have revolutionized cell and molecular biology due to their...
Phytochrome proteins regulate many photoresponses of plants and microorganisms. Light absorption cau...
Bacteriophytochromes (Bphs) are red-light photoreceptor proteins with a photosensory core that consi...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes and their mutant...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) are of g...
The photochemistry and photophysics of organic chromophores in photoresponsive proteins can be tuned...
Phytochromes are red-light sensing proteins, with important light-regulatory roles in different orga...
Fluorescent proteins are versatile tools for molecular imaging. In this study, we report a detailed ...
Phytochrome proteins regulate many photoresponses of plants and microorganisms. Light absorption cau...
Phytochromes constitute a class of photoreceptors that can be photoconverted between two stable stat...
Using X-ray crystallography, continuum electrostatic calculations, and molecular dynamics simulation...
International audienceUsing X-ray crystallography, continuum electrostatic calculations, and molecul...
Use of fluorescent proteins to study in vivo processes in mammals requires near-infrared (NIR) bioma...
Infrared fluorescent proteins (iRFPs) are potential candidates for deep-tissue in vivo imaging. Here...
Genetically encoded fluorescent markers have revolutionized cell and molecular biology due to their...
Phytochrome proteins regulate many photoresponses of plants and microorganisms. Light absorption cau...
Bacteriophytochromes (Bphs) are red-light photoreceptor proteins with a photosensory core that consi...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes and their mutant...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) are of g...
The photochemistry and photophysics of organic chromophores in photoresponsive proteins can be tuned...
Phytochromes are red-light sensing proteins, with important light-regulatory roles in different orga...
Fluorescent proteins are versatile tools for molecular imaging. In this study, we report a detailed ...
Phytochrome proteins regulate many photoresponses of plants and microorganisms. Light absorption cau...
Phytochromes constitute a class of photoreceptors that can be photoconverted between two stable stat...