A dark yellow fluorescent protein (YFP)-based Resonance Energy-Accepting Chromoprotein (REACh) for Förster resonance energy transfer with GFP
- 6 March 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (11) , 4089-4094
- https://doi.org/10.1073/pnas.0509922103
Abstract
Förster resonance energy transfer (FRET) microscopy is a powerful technique that enables the visualization of signaling intermediates, protein interactions, and protein conformational and biochemical status. With the availability of an ever-increasing collection of fluorescent proteins, pairs of spectrally different variants have been used for the study of FRET in living cells. However, suitable spectral overlap, necessary for efficient FRET, is limited by the requirement for proper emission separation. Currently used FRET pairs represent compromises between these opposing spectral demands that reduce the maximally attainable FRET sensitivity. We present a previously undescribed FRET acceptor, a nonfluorescent yellow fluorescent protein (YFP) mutant called REACh (for Resonance Energy-Accepting Chromoprotein). REACh allows the use of the photophysically superior FRET donor EGFP, with which it exhibits optimal spectral overlap, which obviates the need for narrow spectral filtering and allows additional fluorescent labels to be used within the same cell. The latter allows the generation of sophisticated bioassays for complex biological questions. We show that this dark acceptor is ideally suited for donor fluorescence lifetime imaging microscopy (FLIM) and confirm these measurements with an independent intensity-based donor fluorescence quenching resonance energy transfer (FqRET) assay. REACh also can be used in donor photobleaching kinetics-based FRET studies. By detecting FRET between a GFP-tagged ubiquitination substrate and REACh-labeled ubiquitin, we imaged the active ubiquitination machinery inside cells. This assay therefore can be used to study proteins whose function is regulated by ubiquitination.Keywords
This publication has 26 references indexed in Scilit:
- Improved monomeric red, orange and yellow fluorescent proteins derived from Discosoma sp. red fluorescent proteinNature Biotechnology, 2004
- Cyan-emitting and orange-emitting fluorescent proteins as a donor/acceptor pair for fluorescence resonance energy transferBiochemical Journal, 2004
- Applying spectral fingerprinting to the analysis of FRET imagesMicroscopy Research and Technique, 2004
- An improved cyan fluorescent protein variant useful for FRETNature Biotechnology, 2004
- Actin filament uncapping localizes to ruffling lamellae and rocketing vesiclesNature Cell Biology, 2003
- Far-red fluorescent tag for protein labellingBiochemical Journal, 2002
- Generation of Destabilized Green Fluorescent Protein as a Transcription ReporterJournal of Biological Chemistry, 1998
- Time‐gated fluorescence lifetime imaging and microvolume spectroscopy using two‐photon excitationJournal of Microscopy, 1998
- THE GREEN FLUORESCENT PROTEINAnnual Review of Biochemistry, 1998
- Zwischenmolekulare Energiewanderung und FluoreszenzAnnalen der Physik, 1948