Contains fulltext : 87235.pdf (publisher's version ) (Open Access)Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence Resonance Energy Transfer (FRET) sensors based on CFP-YFP. To get insight into this phenomenon, we employed fluorescence lifetime spectroscopy to analyze the influence of ATP on these fluorescent proteins in more detail. Using different donor and acceptor pairs we found that ATP only affected the CFP-YFP based versions. Subsequent analysis of purified monomers of the used proteins showed that ATP has a direct effect on the fluorescence lifetime properties of CFP. Since the fluorescence lifetime analysis of CFP is rather complicated by the existence of differen...
The range of ATP concentrations that can be measured with a fluorescent reagentless biosensor for AT...
<div><p>Cyan fluorescent proteins (CFP) derived from <em>Aequorea victoria</em> GFP, carrying a tryp...
Item does not contain fulltextThe introduction of weak, hydrophobic interactions between fluorescent...
Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence ...
Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence ...
Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence ...
BACKGROUND: The use of spectrally distinct variants of green fluorescent protein (GFP) such as cyan ...
International audienceUsing fluorescence lifetime microspectroscopy and imaging techniques, we have ...
International audienceFluorescent protein-based FRET is a powerful method for visualizing protein-pr...
Cyan and yellow fluorescent proteins (CFP and YFP, respectively) are very frequently used in a great...
<p>Steady state fluorescence emission spectra of CFP-xa-YFP (A) and CFP alone (B) at different ATP c...
Fluorescence Resonance Energy Transfer (FRET) using fluorescent protein variants is widely used to s...
Imaging fluorescence resonance energy transfer (FRET) between molecules labeled with fluorescent pro...
(A) FRET/donor distributions of K562 cells stably expressing CFP-Venus ATP FRET sensor (AT1.03YEMK, ...
Fluorescence resonance energy transfer (FRET) is a technique used for the study of functional intera...
The range of ATP concentrations that can be measured with a fluorescent reagentless biosensor for AT...
<div><p>Cyan fluorescent proteins (CFP) derived from <em>Aequorea victoria</em> GFP, carrying a tryp...
Item does not contain fulltextThe introduction of weak, hydrophobic interactions between fluorescent...
Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence ...
Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence ...
Recently, we described that ATP induces changes in YFP/CFP fluorescence intensities of Fluorescence ...
BACKGROUND: The use of spectrally distinct variants of green fluorescent protein (GFP) such as cyan ...
International audienceUsing fluorescence lifetime microspectroscopy and imaging techniques, we have ...
International audienceFluorescent protein-based FRET is a powerful method for visualizing protein-pr...
Cyan and yellow fluorescent proteins (CFP and YFP, respectively) are very frequently used in a great...
<p>Steady state fluorescence emission spectra of CFP-xa-YFP (A) and CFP alone (B) at different ATP c...
Fluorescence Resonance Energy Transfer (FRET) using fluorescent protein variants is widely used to s...
Imaging fluorescence resonance energy transfer (FRET) between molecules labeled with fluorescent pro...
(A) FRET/donor distributions of K562 cells stably expressing CFP-Venus ATP FRET sensor (AT1.03YEMK, ...
Fluorescence resonance energy transfer (FRET) is a technique used for the study of functional intera...
The range of ATP concentrations that can be measured with a fluorescent reagentless biosensor for AT...
<div><p>Cyan fluorescent proteins (CFP) derived from <em>Aequorea victoria</em> GFP, carrying a tryp...
Item does not contain fulltextThe introduction of weak, hydrophobic interactions between fluorescent...