Infrared fluorescent proteins (iRFPs) are potential candidates for deep-tissue in vivo imaging. Here, we provide molecular-level insights into the role of the protein environment in the structural stability of the chromophore within the protein binding pocket through the flexible hydrogen-bonding network using molecular dynamics simulation. Furthermore, we present systematic excited-state analysis to characterize the nature of the first two excited states and the role of the environment in shaping the nature of the chromophore's excited states within the hybrid quantum mechanics/molecular mechanics framework. Our results reveal that the environment red-shifts the absorption of the chromophore by about 0.32 eV compared to the isolated counte...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
International audienceUsing X-ray crystallography, continuum electrostatic calculations, and molecul...
Bacteriophytochromes are promising tools for tissue microscopy and imaging due to their fluorescence...
Infrared fluorescent proteins (iRFPs) are potential candidates for deep-tissue in vivo imaging. Here...
Near-infrared fluorescent proteins, iRFPs, are recently developed genetically encoded fluorescent pr...
Fluorescent proteins are valuable tools as biochemical markers in molecular and cell biology researc...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
Brighter near-infrared (NIR) fluorescent proteins (FPs) are required for multicolor microscopy and d...
Using X-ray crystallography, continuum electrostatic calculations, and molecular dynamics simulation...
Phytochromes are red/far-red light sensing photoreceptors employing linear tetrapyrroles as chromoph...
Fluorescent proteins are valuable tools as biochemical markers for studying cellular processes. Red ...
Fluorescent proteins are valuable tools as biochemical markers for studying cellular processes. Red ...
Fluorescent proteins are commonly used genetically encodable tools for probing intracellular events ...
Far-red fluorescent proteins (FPs) enable deep-tissue in vivo imaging. Combining FPs with large and ...
Fluorescent proteins (FPs) are extremely valuable biochemical markers which have found a wide range ...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
International audienceUsing X-ray crystallography, continuum electrostatic calculations, and molecul...
Bacteriophytochromes are promising tools for tissue microscopy and imaging due to their fluorescence...
Infrared fluorescent proteins (iRFPs) are potential candidates for deep-tissue in vivo imaging. Here...
Near-infrared fluorescent proteins, iRFPs, are recently developed genetically encoded fluorescent pr...
Fluorescent proteins are valuable tools as biochemical markers in molecular and cell biology researc...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
Brighter near-infrared (NIR) fluorescent proteins (FPs) are required for multicolor microscopy and d...
Using X-ray crystallography, continuum electrostatic calculations, and molecular dynamics simulation...
Phytochromes are red/far-red light sensing photoreceptors employing linear tetrapyrroles as chromoph...
Fluorescent proteins are valuable tools as biochemical markers for studying cellular processes. Red ...
Fluorescent proteins are valuable tools as biochemical markers for studying cellular processes. Red ...
Fluorescent proteins are commonly used genetically encodable tools for probing intracellular events ...
Far-red fluorescent proteins (FPs) enable deep-tissue in vivo imaging. Combining FPs with large and ...
Fluorescent proteins (FPs) are extremely valuable biochemical markers which have found a wide range ...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
International audienceUsing X-ray crystallography, continuum electrostatic calculations, and molecul...
Bacteriophytochromes are promising tools for tissue microscopy and imaging due to their fluorescence...