The Utility of Fluorescence Recovery after Photobleaching (FRAP) to Study the Plasma Membrane

被引:3
|
作者
Day, Charles A. [1 ,2 ]
Kang, Minchul [3 ]
机构
[1] Univ Minnesota, Hormel Inst, Austin, MN 55912 USA
[2] Mayo Clin, Rochester, MN 55902 USA
[3] Texas A&M Commerce, Dept Math, Commerce, TX 75428 USA
关键词
fluorescence recovery after photobleaching; FRAP; diffusion; plasma membrane; microdomain; actin; confocal microscopy; INFLUENZA HEMAGGLUTININ MUTANTS; UNDERGO HOP DIFFUSION; FLUID MOSAIC MODEL; LATERAL DIFFUSION; BREFELDIN-A; LIVING CELLS; INTRACELLULAR-TRANSPORT; DYNAMIC CONFINEMENT; G-PROTEIN; MOBILITY;
D O I
10.3390/membranes13050492
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The plasma membrane of mammalian cells is involved in a wide variety of cellular processes, including, but not limited to, endocytosis and exocytosis, adhesion and migration, and signaling. The regulation of these processes requires the plasma membrane to be highly organized and dynamic. Much of the plasma membrane organization exists at temporal and spatial scales that cannot be directly observed with fluorescence microscopy. Therefore, approaches that report on the membrane's physical parameters must often be utilized to infer membrane organization. As discussed here, diffusion measurements are one such approach that has allowed researchers to understand the subresolution organization of the plasma membrane. Fluorescence recovery after photobleaching (or FRAP) is the most widely accessible method for measuring diffusion in a living cell and has proven to be a powerful tool in cell biology research. Here, we discuss the theoretical underpinnings that allow diffusion measurements to be used in elucidating the organization of the plasma membrane. We also discuss the basic FRAP methodology and the mathematical approaches for deriving quantitative measurements from FRAP recovery curves. FRAP is one of many methods used to measure diffusion in live cell membranes; thus, we compare FRAP with two other popular methods: fluorescence correlation microscopy and single-particle tracking. Lastly, we discuss various plasma membrane organization models developed and tested using diffusion measurements.
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页数:16
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