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Determination of diffusion coefficients in live cells using fluorescence recovery after photobleaching with wide-field fluorescence microscopy

机译:宽视野荧光显微镜光漂白后的荧光恢复测定活细胞中的扩散系数

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摘要

Fluorescence recovery after photobleaching (FRAP) enables characterization of quantitative dynamic properties such as diffusion coefficients of fluorescent molecules in living cells by analyzing the recovery of fluorescence intensity after photobleaching in a specific cellular compartment or area. To quantitatively determine high intracellular diffusion coefficients, a suitable optical system as well as an appropriate model for fast diffusion analysis is necessary. Here, we propose a procedure to quantify the diffusion coefficient of rapidly-diffusing fluorescent molecules that makes use of an epi-fluorescence microscope with a photobleaching laser in combination with established models for diffusion analysis. Analysis for the diffusion coefficients of tandemly oligomerized green flurescent proteins (GFPs) in living cells when changing the photobleaching times showed that photobleaching with shorter times than the diffusion speed indicated not the only way to obtain appropriate diffusion coefficients of fast-moving molecules. Our results also showed that the apparent spreading of the effective radius of the photobleached area works as a correction factor for determining appropriate diffusion coefficients of fast-moving molecules like monomeric GFPs. Our procedure provides a useful approach for quantitative measurement of diffusion coefficients in living cells. This procedure is relevant for characterizing dynamic molecular interactions, especially of fast-moving molecules, and is relevant for studies in many biological fields.
机译:光漂白后的荧光恢复(FRAP)通过分析特定细胞区室或区域中光漂白后的荧光强度恢复,从而能够表征定量动态特性,例如活细胞中荧光分子的扩散系数。为了定量确定高细胞内扩散系数,需要合适的光学系统以及用于快速扩散分析的合适模型。在这里,我们提出了一种利用落射荧光显微镜和光漂白激光器结合已建立的扩散分析模型来量化快速扩散的荧光分子的扩散系数的程序。当改变光漂白时间时,对串联寡聚化绿色荧光蛋白(GFP)在活细胞中的扩散系数的分析表明,比扩散速度短的光漂白表明,不是获得快速移动分子的适当扩散系数的唯一方法。我们的研究结果还表明,光漂白区域有效半径的表观扩展可作为确定快速移动分子(如单体GFP)的适当扩散系数的校正因子。我们的程序为定量测量活细胞中的扩散系数提供了一种有用的方法。此过程与表征动态分子相互作用(尤其是快速移动的分子)有关,并且与许多生物学领域的研究有关。

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