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Full-Spectral Multiplexing of Bioluminescence Resonance Energy Transfer in Three TRPV Channels
Authors:Hermanus Johannes Ruigrok  Guillaume Shahid  Bertrand Goudeau  Florence Poulletier de Gannes  Emmanuelle Poque-Haro  Annabelle Hurtier  Isabelle Lagroye  Pierre Vacher  Stéphane Arbault  Neso Sojic  Bernard Veyret  Yann Percherancier
Affiliation:1. Laboratoire de l’Intégration du Matériau au Système, Centre National de la Recherche Scientifique (CNRS) UMR 5218, Talence, France;2. Université de Bordeaux, Talence, France;3. Institut des Sciences Moleculaires, Centre National de la Recherche Scientifique (CNRS) UMR 5255, NSYSA Group, ENSCBP, Pessac, France;4. Paris Sciences et Lettres Research University, Paris, France;5. Institut National de la Santé et de la Recherche Médicale (INSERM) U1218, Institut Bergonié, Bordeaux, France
Abstract:Multiplexed bioluminescence resonance energy transfer (BRET) assays were developed to monitor the activation of several functional transient receptor potential (TRP) channels in live cells and in real time. We probed both TRPV1 intramolecular rearrangements and its interaction with Calmodulin (CaM) under activation by chemical agonists and temperature. Our BRET study also confirmed that: (1) capsaicin and heat promoted distinct transitions, independently coupled to channel gating, and that (2) TRPV1 and Ca2+-bound CaM but not Ca2+-free CaM were preassociated in resting live cells, while capsaicin activation induced both the formation of more TRPV1/CaM complexes and conformational changes. The BRET assay, based on the interaction with Calmodulin, was successfully extended to TRPV3 and TRPV4 channels. We therefore developed a full-spectral three-color BRET assay for analyzing the specific activation of each of the three TRPV channels in a single sample. Such key improvement in BRET measurement paves the way for the simultaneous monitoring of independent biological pathways in live cells.
Keywords:Corresponding author
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