ACS Chemical Biology · 2013 · 55 citations · 19 references
Photonic SensorEngineeringBiomolecular ToolSignal RecognitionMolecular BiologyOptogeneticsRed Fret SensorsMolecular ImagingBiophysicsNovel Imaging MethodDynamic RangeBiophotonicsCell BiologySingle-molecule DetectionOptical SensorsSignal TransductionSensorsFret SensorsSensor DesignSystems BiologyMedicineOptical Sensor
Elucidation of subcellular signaling networks by multiparameter imaging is hindered by a lack of sensitive FRET pairs spectrally compatible with the classic CFP/YFP pair. Here, we present a generic strategy to enhance the traditionally poor sensitivity of red FRET sensors by developing self-associating variants of mOrange and mCherry that allow sensors to switch between well-defined on- and off states. Requiring just a single mutation of the mFruit domain, this new FRET pair improved the dynamic range of protease sensors up to 10-fold and was essential to generate functional red variants of CFP-YFP-based Zn(2+) sensors. The large dynamic range afforded by the new red FRET pair allowed simultaneous use of differently colored Zn(2+) FRET sensors to image Zn(2+) over a broad concentration range in the same cellular compartment.
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A monomeric red fluorescent protein
Robert E. Campbell, Oded Tour, Amy E. Palmer et al. · Proceedings of the National Academy of Sciences · 2002 · 2.4K citations · Full text