Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors

Cyclic AMP governs many fundamental signaling events in eukaryotic cells. Although cAMP signaling has been a major research focus for a long time, recent technological developments are revealing novel aspects of this paradigmatic pathway. In this chapter, we give an overview over current fluorescenc...

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Main Authors: Gesellchen, F, Stangherlin, A, Surdo, N, Terrin, A, Zoccarato, A, Zaccolo, M
Format: Journal article
Language:English
Published: 2011
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author Gesellchen, F
Stangherlin, A
Surdo, N
Terrin, A
Zoccarato, A
Zaccolo, M
author_facet Gesellchen, F
Stangherlin, A
Surdo, N
Terrin, A
Zoccarato, A
Zaccolo, M
author_sort Gesellchen, F
collection OXFORD
description Cyclic AMP governs many fundamental signaling events in eukaryotic cells. Although cAMP signaling has been a major research focus for a long time, recent technological developments are revealing novel aspects of this paradigmatic pathway. In this chapter, we give an overview over current fluorescence resonance energy transfer (FRET)-based sensors for detection of cAMP dynamics, and their application in monitoring local, compartmentalized cAMP signals within living cells. A basic step-by-step protocol is given for conducting a FRET experiment in primary cells with a unimolecular cAMP sensor, which can easily be adapted to a user's specific requirements. © Springer Science+Business Media, LLC 2011.
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spelling oxford-uuid:4cda282d-fd1b-4f8a-b2f8-3f938748edf72022-03-26T15:51:50ZMeasuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensorsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:4cda282d-fd1b-4f8a-b2f8-3f938748edf7EnglishSymplectic Elements at Oxford2011Gesellchen, FStangherlin, ASurdo, NTerrin, AZoccarato, AZaccolo, MCyclic AMP governs many fundamental signaling events in eukaryotic cells. Although cAMP signaling has been a major research focus for a long time, recent technological developments are revealing novel aspects of this paradigmatic pathway. In this chapter, we give an overview over current fluorescence resonance energy transfer (FRET)-based sensors for detection of cAMP dynamics, and their application in monitoring local, compartmentalized cAMP signals within living cells. A basic step-by-step protocol is given for conducting a FRET experiment in primary cells with a unimolecular cAMP sensor, which can easily be adapted to a user's specific requirements. © Springer Science+Business Media, LLC 2011.
spellingShingle Gesellchen, F
Stangherlin, A
Surdo, N
Terrin, A
Zoccarato, A
Zaccolo, M
Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors
title Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors
title_full Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors
title_fullStr Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors
title_full_unstemmed Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors
title_short Measuring spatiotemporal dynamics of cyclic AMP signaling in real-time using FRET-based biosensors
title_sort measuring spatiotemporal dynamics of cyclic amp signaling in real time using fret based biosensors
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