Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer scale. Here, we report an engineered photoconvertible fluorescent protein (pcFP) variant, designated as mMaple, that is suited for use in multiple conventional and super-resolution imaging modalities, specifically, widefield and confocal microscopy, structured illumination microscopy (SIM), and single-molecule localization microscopy. We demonstrate the versatility of mMaple by obtaining super-resolution images of protein organization in Escherichia coli and conventional fluorescence images of mammalian cells. Beneficial features of mMaple include high photostability of the green state when expressed in mammalian cells and high steady state intr...
Recent advances in optical imaging with single molecules beyond the diffraction limit (e.g., PALM, F...
In a method termed photoactivated localization microscopy (PALM), super-resolution fluorescence imag...
Applicability to living specimens and genetically encodable tagging has made fluorescence microscopy...
Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer sca...
Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer sca...
Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer sca...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
International audienceIn these last two decades , fluorescent proteins (FPs) have become highly valu...
Fluorescence microscopy has been one of the breakthroughs in biological imaging. This technique take...
Fluorescence microscopy of genetically encoded fluorescent proteins (FPs) and biosensors has transfo...
Advanced imaging techniques crucially depend on the labels used. In this work, we present the struct...
Super-resolution fluorescence microscopy plays a major role in revealing the organization and dynami...
Photoconvertible fluorescent proteins (pc-FPs) are a class of fluorescent proteins with "optica...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
International audienceAdvanced imaging techniques crucially depend on the labels used. In this work,...
Recent advances in optical imaging with single molecules beyond the diffraction limit (e.g., PALM, F...
In a method termed photoactivated localization microscopy (PALM), super-resolution fluorescence imag...
Applicability to living specimens and genetically encodable tagging has made fluorescence microscopy...
Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer sca...
Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer sca...
Recent advances in fluorescence microscopy have extended the spatial resolution to the nanometer sca...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
International audienceIn these last two decades , fluorescent proteins (FPs) have become highly valu...
Fluorescence microscopy has been one of the breakthroughs in biological imaging. This technique take...
Fluorescence microscopy of genetically encoded fluorescent proteins (FPs) and biosensors has transfo...
Advanced imaging techniques crucially depend on the labels used. In this work, we present the struct...
Super-resolution fluorescence microscopy plays a major role in revealing the organization and dynami...
Photoconvertible fluorescent proteins (pc-FPs) are a class of fluorescent proteins with "optica...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
International audienceAdvanced imaging techniques crucially depend on the labels used. In this work,...
Recent advances in optical imaging with single molecules beyond the diffraction limit (e.g., PALM, F...
In a method termed photoactivated localization microscopy (PALM), super-resolution fluorescence imag...
Applicability to living specimens and genetically encodable tagging has made fluorescence microscopy...