Fret Calcium Sensor

A FRET calcium sensor is a fluorescent probe that reports changes in intracellular calcium concentration, an essential signal for studying neuronal activity. It uses Förster resonance energy transfer between a fluorescent donor and acceptor linked to a calcium-responsive sensing domain; calcium binding changes the probe’s conformation, altering energy transfer and the measured fluorescence ratio. In neuroscience, these sensors enable real-time imaging of calcium dynamics in neurons and neural circuits, helping relate synaptic input, electrical activity, and cellular signaling to behavior or disease. Their ratiometric readout supports quantitative comparisons across experiments and improves analysis of dynamic neural processes.

Fret Calcium Sensor - Related Videos

Research

JoVE Journal - Biology

G Protein-selective GPCR Conformations Measured Using FRET Sensors in a Live Cell Suspension Fluorometer Assay

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Cited by 4 •

2016

Simple methods to detect the selective activation of G proteins by G protein-coupled receptors remain an outstanding challenge in cell signaling. Here, Fӧrster resonance energy transfer (FRET) biosensors have been developed by pairwise tethering a GPCR to G protein peptides to probe conformational changes at controlled concentrations in live cells.

Real Time Monitoring of Intracellular Bile Acid Dynamics Using a Genetically Encoded FRET-based Bile Acid Sensor

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Cited by 8 •

2016

We provide a detailed protocol to study bile acid dynamics in living cells using a genetically encoded BAS FRET sensor. This Bile Acid Sensor represents a unique tool to study (regulation of) bile acid transport and FXR activation in a wide range of cell types.

In Vivo Calcium Imaging Using Synaptically Localized Calcium Sensors in Drosophila melanogaster

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2025

This video demonstrates a method for in vivo calcium imaging using synaptically localized calcium sensors in flies. It outlines the steps for preparing the flies for microscopy, conducting olfactory conditioning, and visualizing odor-induced calcium influx.

Imaging Intracellular ATP Dynamics Using FRET-Based Sensors in an Organotypic Mouse Hippocampal Slice

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2025

Source: Lerchundi, R., et. al. Imaging of Intracellular ATP in Organotypic Tissue Slices of the Mouse Brain using the FRET-based Sensor ATeam1.03YEMK. J. Vis. Exp. (2019)This video demonstrates the use of FRET(Fluorescence Resonance Energy Transfer)-based sensors to measure intracellular ATP levels in organotypic mouse hippocampal slices, enabling real-time visualization of ATP dynamics in neurons and astrocytes under physiological and experimental conditions.

Monitoring ER/SR Calcium Release with the Targeted Ca2+ Sensor CatchER+

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Cited by 11 •

2017

We present protocols for the application of our targeted genetically-encoded calcium indicator (GECI) CatchER+ for monitoring rapid calcium transients in the endoplasmic/sarcoplasmic reticulum (ER/SR) of HEK293 and skeletal muscle C2C12 cells using real-time fluorescence microscopy. A protocol for the in situ Kd measurement and calibration is also discussed.

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