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PIE-FLIM Measurements of Two Different FRET-Based Biosensor Activities in the Same Living Cells.

Citation
Reissaus, C. A., et al. “Pie-Flim Measurements Of Two Different Fret-Based Biosensor Activities In The Same Living Cells.”. Biophysical Journal, pp. 1820-1829.
Center Indiana University
Author Christopher A Reissaus, Kathleen H Day, Raghavendra G Mirmira, Kenneth W Dunn, Fredrick M Pavalko, Richard N Day
Abstract

We report the use of pulsed interleaved excitation (PIE)-fluorescence lifetime imaging microscopy (FLIM) to measure the activities of two different biosensor probes simultaneously in single living cells. Many genetically encoded biosensors rely on the measurement of Förster resonance energy transfer (FRET) to detect changes in biosensor conformation that accompany the targeted cell signaling event. One of the most robust ways of quantifying FRET is to measure changes in the fluorescence lifetime of the donor fluorophore using FLIM. The study of complex signaling networks in living cells demands the ability to track more than one of these cellular events at the same time. Here, we demonstrate how PIE-FLIM can separate and quantify the signals from different FRET-based biosensors to simultaneously measure changes in the activity of two cell signaling pathways in the same living cells in tissues. The imaging system described here uses selectable laser wavelengths and synchronized detection gating that can be tailored and optimized for each FRET pair. Proof-of-principle studies showing simultaneous measurement of cytosolic calcium and protein kinase A activity are shown, but the PIE-FLIM approach is broadly applicable to other signaling pathways.

Year of Publication
2020
Journal
Biophysical journal
Volume
118
Issue
8
Number of Pages
1820-1829
Date Published
12/2020
ISSN Number
1542-0086
DOI
10.1016/j.bpj.2020.03.003
Alternate Journal
Biophys J
PMID
32191861
PMCID
PMC7175463
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