首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Visualizing single molecules inside living cells using total internal reflection fluorescence microscopy.
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Visualizing single molecules inside living cells using total internal reflection fluorescence microscopy.

机译:使用全内反射荧光显微镜观察活细胞内的单个分子。

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Over the past 10 years, advances in laser and detector technologies have enabled single fluorophores to be visualized in aqueous solution. Here, we describe methods based on total internal reflection fluorescence microscopy (TIRFM) that we have developed to study the behavior of individual protein molecules within living mammalian cells. We have used cultured myoblasts that were transiently transfected with DNA plasmids encoding a target protein fused to green fluorescent protein (GFP). Expression levels were quantified from confocal images of control dilutions of GFP and cells with 1-100 nM GFP were then examined using TIRFM. An evanescent field was produced by a totally internally reflected, argon ion laser beam that illuminated a shallow region (50-100 nm deep) at the glass-water interface. Individual GFP-tagged proteins that entered the evanescent field appeared as individual, diffraction-limited spots of light, which were clearly resolved from background fluorescence. Molecules that bound to the basal cell membrane remained fixed in position for many seconds, whereas those diffusing freely in the cytoplasm disappeared within a few milliseconds. We developed automated detection and tracking methods to recognize and characterize the behavior of single molecules in recorded video sequences. This enabled us to measure the kinetics of photobleaching and lateral diffusion of membrane-bound molecules.
机译:在过去的十年中,激光和检测器技术的进步已使单个荧光团在水溶液中可视化。在这里,我们描述了基于全内反射荧光显微镜(TIRFM)的方法,我们已经开发了这些方法来研究哺乳动物活细胞内单个蛋白质分子的行为。我们使用了培养的成肌细胞,该细胞被编码与绿色荧光蛋白(GFP)融合的目标蛋白的DNA质粒瞬时转染。从GFP对照稀释液的共聚焦图像定量表达水平,然后使用TIRFM检查具有1-100nM GFP的细胞。 totally逝场是由全内反射的氩离子激光束产生的,该激光束照亮了玻璃水界面的浅区域(深50-100 nm)。进入van逝场的带有GFP标记的单个蛋白表现为单个的衍射受限光点,这些光可从背景荧光中清楚地分辨出来。与基底细胞膜结合的分子在许多秒内保持固定位置,而在细胞质中自由扩散的分子在几毫秒内消失。我们开发了自动检测和跟踪方法,以识别和表征记录的视频序列中单个分子的行为。这使我们能够测量光漂白动力学和膜结合分子的横向扩散。

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