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Fluorescence localization after photobleaching (FLAP): a new method for studying protein dynamics in living cells
Authors:G. A. Dunn,I. M. Dobbie&dagger  ,J. Monypenny&dagger  ,M. R. Holt,&   D. Zicha&dagger  
Affiliation:MRC Muscle and Cell Motility Unit, The Randall Centre, New Hunt's House, King's College London, London SE1 1UL, UK;Light Microscopy, Imperial Cancer Research Fund, 44 Lincoln's Inn Fields, London WC2A 3PX, UK
Abstract:FLAP is a new method for localized photo‐labelling and subsequent tracking of specific molecules within living cells. It is simple in principle, easy to implement and has a wide potential application. The molecule to be located carries two fluorophores: one to be photobleached and the other to act as a reference label. Unlike the related methods of fluorescence recovery after photobleaching (FRAP) and fluorescence loss in photobleaching (FLIP), the use of a reference fluorophore permits the distribution of the photo‐labelled molecules themselves to be tracked by simple image differencing. In effect, FLAP is therefore comparable with methods of photoactivation. Its chief advantage over the method of caged fluorescent probes is that it can be used to track chimaeric fluorescent proteins directly expressed by the cells. Although methods are being developed to track fluorescent proteins by direct photoactivation, these still have serious drawbacks. In order to demonstrate FLAP, we have used nuclear microinjection of cDNA fusion constructs of β‐actin with yellow (YFP) and cyan (CFP) fluorescent proteins to follow both the fast relocation dynamics of monomeric (globular) G‐actin and the much slower dynamics of filamentous F‐actin simultaneously in living cells.
Keywords:Actin    cell motility    CFP    FLIP    fluorescence microscopy    FRAP    GFP    laser scanning confocal microscopy    photobleaching    YFP
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