Enhanced BRET Technology for the Monitoring of Agonist-Induced and Agonist-Independent Interactions between GPCRs and β-Arrestins
Kocan M, Dalrymple M, Seeber R, Feldman B, Pfleger K. Enhanced BRET Technology for the Monitoring of Agonist-Induced and Agonist-Independent Interactions between GPCRs and β-Arrestins. Frontiers In Endocrinology 2010, 1: 12. PMID: 22654789, PMCID: PMC3356007, DOI: 10.3389/fendo.2010.00012.Peer-Reviewed Original ResearchBioluminescence resonance energy transferG protein-coupled receptorsVariant of Renilla luciferaseMonitoring of protein-protein interactionsProtein-protein interactionsBioluminescent donor enzymeVasopressin type II receptorHeterologous co-expressionProtein-protein complexesReal-time monitoring of protein-protein interactionsBioluminescence resonance energy transfer technologyB-arrestinAgonist-independent mannerDonor enzymeBioluminescence resonance energy transfer methodsFusion proteinResonance energy transferBRET technologyMonitor interactionsCoelenterazine substrateRenilla luciferaseAcceptor fluorophoresMutant receptorsType II receptorLiving cells
This site is protected by hCaptcha and its Privacy Policy and Terms of Service apply