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Multicolor time-resolved Förster resonance energy transfer microscopy reveals the impact of GPCR oligomerization on internalization processes
Article de revue   Avec comité de lecture

Multicolor time-resolved Förster resonance energy transfer microscopy reveals the impact of GPCR oligomerization on internalization processes

Orestis Faklaris, Martin Cottet, Amandine Falco, Brice Villier, Michel Laget, Jurriaan M Zwier, Eric Trinquet, Bernard Mouillac, Jean-Philippe Pin et Thierry Durroux
The FASEB journal, Vol.29(6), pp.2235-2246
06/2015
PMID: 25690655

Résumé

Animals CHO Cells Cricetinae Cricetulus Endocytosis Fluorescence Resonance Energy Transfer - instrumentation Fluorescence Resonance Energy Transfer - methods HEK293 Cells Humans Microscopy, Fluorescence - instrumentation Microscopy, Fluorescence - methods Protein Multimerization Receptors, G-Protein-Coupled - chemistry Receptors, G-Protein-Coupled - metabolism Receptors, Vasopressin - agonists Receptors, Vasopressin - chemistry Receptors, Vasopressin - metabolism Reproducibility of Results Time-Lapse Imaging - instrumentation Time-Lapse Imaging - methods

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