Single-molecule fluorescence imaging is often incompatible with physiological protein concentrations, as fluorescence background overwhelms an individual molecule’s signal. We solve this problem with a new imaging approach called PhADE (PhotoActivation, Diffusion and Excitation). A protein of interest is fused to a photoactivatable protein (mKikGR) and introduced to its surface-immobilized substrate. After photoactivation of mKikGR near the surface, rapid diffusion of the unbound mKikGR fusion out of the detection volume eliminates background fluorescence, whereupon the bound molecules are imaged. We labeled the eukaryotic DNA replication protein flap endonuclease 1 with mKikGR and added it to replication-competent Xenopus laevis egg extrac...
Single-molecule localization microscopy (SMLM) is a developing field of biological imaging that empl...
Photoswitchable fluorescent probes are central to localization-based super-resolution microscopy. Am...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...
Single-molecule fluorescence imaging is often incompatible with physiological protein concentrations...
AbstractSingle-molecule fluorescence microscopy is a powerful tool for observing biomolecular intera...
The recent demonstration and utilization of fluorescent proteins whose fluorescence can be switched ...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...
AbstractUsing photoactivatable fluorescent protein as an intracellular protein label for single-mole...
Single-molecule localization microscopy (SMLM) can reveal nanometric details of biological samples, ...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
AbstractFluorescent proteins are now widely used in fluorescence microscopy as genetic tags to any p...
Single-molecule localization microscopy (SMLM) is a developing field of biological imaging that empl...
Photoswitchable fluorescent probes are central to localization-based super-resolution microscopy. Am...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...
Single-molecule fluorescence imaging is often incompatible with physiological protein concentrations...
AbstractSingle-molecule fluorescence microscopy is a powerful tool for observing biomolecular intera...
The recent demonstration and utilization of fluorescent proteins whose fluorescence can be switched ...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...
AbstractUsing photoactivatable fluorescent protein as an intracellular protein label for single-mole...
Single-molecule localization microscopy (SMLM) can reveal nanometric details of biological samples, ...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
AbstractFluorescent proteins are now widely used in fluorescence microscopy as genetic tags to any p...
Single-molecule localization microscopy (SMLM) is a developing field of biological imaging that empl...
Photoswitchable fluorescent probes are central to localization-based super-resolution microscopy. Am...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...