<p>(A) The fluorescence spectra of mBeRFP (solid line) and Alexa 647 (dashed line). (B) The mBeRFP-DEVD-SNAP 647 protein was digested by caspase 3 <i>in vitro</i> at 37°C. The spectral sign was recorded at the 0, 40, and 90 min time points.</p
AbstractA method for spectral analysis of Förster resonance energy transfer (FRET) signals is presen...
FRET biosensors have proven very useful tools for studying the activation of specific signalling pat...
Abstract Förster resonance energy transfer (FRET) is a powerful method for obtaining information ab...
<p>Fluorescence emission spectra of individual fluorophore-protein conjugates, Alexa Fluor 488-LFA-1...
<p>(A) Schematic diagram of the FRET experiments. Fluorescence donor, Alexa 488 (green), and fluores...
<p><b>Absorption spectra of fluorescently labeled Skp mutants.</b> (A<i>–</i>B) Absorption spectra o...
<p>Panels <b>A–F</b> correspond to DNA duplexes V–X in the presence of MutS (400 nM per monomer – da...
<p>A cysteine was substituted for Asp-30, located in domain 1 and the derivatives were labeled with ...
Imaging fluorescence resonance energy transfer (FRET) between molecules labeled with fluorescent pro...
International audienceThe fluorescent-protein based fluorescence resonance energy transfer (FRET) ap...
<p>Absorbance and fluorescence spectra of C64/C468-ER/DY are shown in solid black and solid blue lin...
<p>(<b>A</b>) A schematic structure of a FRET-based biosensor, CYR83. CYR83 consists of three fluore...
<p><b>A</b>) Fluorescence emission spectra of 10 nM PA<sup>E733C*AF488</sup> (solid line; donor alon...
In previous studies, we encountered substantial problems using the CFP_YFP Förster resonance en...
AbstractThe fluorescent-protein based fluorescence resonance energy transfer (FRET) approach is a po...
AbstractA method for spectral analysis of Förster resonance energy transfer (FRET) signals is presen...
FRET biosensors have proven very useful tools for studying the activation of specific signalling pat...
Abstract Förster resonance energy transfer (FRET) is a powerful method for obtaining information ab...
<p>Fluorescence emission spectra of individual fluorophore-protein conjugates, Alexa Fluor 488-LFA-1...
<p>(A) Schematic diagram of the FRET experiments. Fluorescence donor, Alexa 488 (green), and fluores...
<p><b>Absorption spectra of fluorescently labeled Skp mutants.</b> (A<i>–</i>B) Absorption spectra o...
<p>Panels <b>A–F</b> correspond to DNA duplexes V–X in the presence of MutS (400 nM per monomer – da...
<p>A cysteine was substituted for Asp-30, located in domain 1 and the derivatives were labeled with ...
Imaging fluorescence resonance energy transfer (FRET) between molecules labeled with fluorescent pro...
International audienceThe fluorescent-protein based fluorescence resonance energy transfer (FRET) ap...
<p>Absorbance and fluorescence spectra of C64/C468-ER/DY are shown in solid black and solid blue lin...
<p>(<b>A</b>) A schematic structure of a FRET-based biosensor, CYR83. CYR83 consists of three fluore...
<p><b>A</b>) Fluorescence emission spectra of 10 nM PA<sup>E733C*AF488</sup> (solid line; donor alon...
In previous studies, we encountered substantial problems using the CFP_YFP Förster resonance en...
AbstractThe fluorescent-protein based fluorescence resonance energy transfer (FRET) approach is a po...
AbstractA method for spectral analysis of Förster resonance energy transfer (FRET) signals is presen...
FRET biosensors have proven very useful tools for studying the activation of specific signalling pat...
Abstract Förster resonance energy transfer (FRET) is a powerful method for obtaining information ab...