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Updated: Mar 16, 2026

Measurement of 3-Dimensional cAMP Distributions in Living Cells using 4-Dimensional x, y, z, and λ Hyperspectral FRET Imaging and Analysis
Published on: October 27, 2020
Quantitative spectral linear unmixing and ratiometric FRET for live-cell imaging of protein interactions
1Cellular Neurophysiology, Center of Physiology, Hannover Medical School, Hannover 30625, Germany.
Abstract:
A biophysical imaging strategy based on linear unmixing Förster resonance energy transfer (lux-FRET) for investigating protein-protein interactions and receptor-mediated signaling in live cells is presented. This method utilizes spectral unmixing of FRET signals acquired via confocal laser scanning microscopy (LSM), enabling high-resolution quantification of molecular interactions with both spatial and temporal precision. Applying lux-FRET, receptor-receptor interactions and downstream signaling events, including agonist specificity for 5-HT receptors were examined. Ratiometric Förster resonance energy transfer (FRET) measurements with a genetically encoded cAMP biosensor allowed us to assess biosensor sensitivity to cyclic nucleotides and receptor efficacy. Additionally, physiological interactions between CD44 and 5-HT receptors and the oligomerization state of the 5-HT1A receptor through apparent FRET efficiency analysis was explored. The findings demonstrate the utility of lux-FRET combined with quantitative fluorescence microscopy as a powerful tool for dissecting dynamic signaling mechanisms in live cells. This approach offers broad applicability for researchers studying receptor pharmacology, cellular signaling, and protein interaction dynamics.

