Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imaging, and optimization of their photophysical properties underlies improved performance and novel applications. Here we establish a link between photoswitching contrast, a key parameter that largely dictates the achievable resolution in nanoscopy applications, and chromophore conformation in the non-fluorescent state of rsEGFP2, a widely employed label in REversible Saturable OpticaL Fluorescence Transitions (RESOLFT) microscopy. Upon illumination, the cis chromophore of rsEGFP2 isomerizes to two distinct off-state conformations, trans1 and trans2, located on either side of the V151 side chain. Reducing or enlarging the side chain at this positi...
Photoswitchable fluorescent proteins have enabled new approaches for imaging cells, but their utilit...
Chromophores absorb light in photosensitive proteins and thereby initiate fundamental biological pro...
Single-molecule localization microscopy (SMLM) at cryogenic temperature opens new avenues to investi...
International audienceReversibly photoswitchable fluorescent proteins are essential markers for adva...
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imagin...
International audienceFluorescent proteins have revolutionized life sciences because they allow noni...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
International audienceReversibly switchable fluorescent proteins (RSFPs) serve as markers in advance...
Reversibly switchable fluorescent proteins (RSFPs) serve as markers in advanced fluorescence imaging...
Reversibly photoswitchable fluorescent proteins (RSFPs) are fluorescent proteins whose fluorescence,...
The Cover Feature displays a comparison of chromophore conformations in the X-ray crystal structures...
Reversibly photoswitchable fluorescent proteins (RSFPs) are highly useful probes for a range of appl...
International audiencePhototransformable fluorescent proteins (FPs) have received considerable atten...
Reversibly photoswitchable fluorescent proteins (RSFPs) are highly useful probes for a range of appl...
Reversibly photoswitchable fluorescent proteins (RSFPs) admirably combine the genetic encoding of fl...
Photoswitchable fluorescent proteins have enabled new approaches for imaging cells, but their utilit...
Chromophores absorb light in photosensitive proteins and thereby initiate fundamental biological pro...
Single-molecule localization microscopy (SMLM) at cryogenic temperature opens new avenues to investi...
International audienceReversibly photoswitchable fluorescent proteins are essential markers for adva...
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imagin...
International audienceFluorescent proteins have revolutionized life sciences because they allow noni...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
International audienceReversibly switchable fluorescent proteins (RSFPs) serve as markers in advance...
Reversibly switchable fluorescent proteins (RSFPs) serve as markers in advanced fluorescence imaging...
Reversibly photoswitchable fluorescent proteins (RSFPs) are fluorescent proteins whose fluorescence,...
The Cover Feature displays a comparison of chromophore conformations in the X-ray crystal structures...
Reversibly photoswitchable fluorescent proteins (RSFPs) are highly useful probes for a range of appl...
International audiencePhototransformable fluorescent proteins (FPs) have received considerable atten...
Reversibly photoswitchable fluorescent proteins (RSFPs) are highly useful probes for a range of appl...
Reversibly photoswitchable fluorescent proteins (RSFPs) admirably combine the genetic encoding of fl...
Photoswitchable fluorescent proteins have enabled new approaches for imaging cells, but their utilit...
Chromophores absorb light in photosensitive proteins and thereby initiate fundamental biological pro...
Single-molecule localization microscopy (SMLM) at cryogenic temperature opens new avenues to investi...