Homo-FRET Imaging as a tool to quantify protein and lipid clustering

Publication date

2010

Authors

Bader, A.N.ISNI 0000000393672852
Hoetzl, S.
Hofman, E.G.ISNI 0000000393693098
Voortman, J.ISNI 0000000387521150
van Bergen En Henegouwen, Paul M PORCID 0000-0001-6050-9042ISNI 0000000387765753
van Meer, GerritISNI 0000000397008035
Gerritsen, HansISNI 0000000114831882

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Article
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Abstract

Homo-FRET, Förster resonance energy transfer between identical fluorophores, can be conveniently measured by observing its effect on the fluorescence anisotropy. This review aims to summarize the possibilities of fluorescence anisotropy imaging techniques to investigate clustering of identical proteins and lipids. Homo-FRET imaging has the ability to determine distances between fluorophores. In addition it can be employed to quantify cluster sizes as well as cluster size distributions. The interpretation of homo-FRET signals is complicated by the fact that both the mutual orientations of the fluorophores and the number of fluorophores per cluster affect the fluorescence anisotropy in a similar way. The properties of the fluorescence probes are very important. Taking these properties into account is critical for the correct interpretation of homo-FRET signals in protein- and lipid-clustering studies. This is be exemplified by studies on the clustering of the lipid raft markers GPI and K-ras, as well as for EGF receptor clustering in the plasma membrane

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Citation

Bader, A N, Hoetzl, S, Hofman, E G, Voortman, J, van Bergen en Henegouwen, P M P, van Meer, G & Gerritsen, H C 2010, 'Homo-FRET Imaging as a tool to quantify protein and lipid clustering', ChemPhysChem, vol. 12, no. 3, pp. 475-483. https://doi.org/10.1002/cphc.201000801