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Fluorescent proteins for FRET microscopy: Monitoring protein interactions in living cells

机译:用于FRET显微镜的荧光蛋白:监测活细胞中的蛋白相互作用

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摘要

The discovery and engineering of novel fluorescent proteins (FPs) from diverse organisms is yielding fluorophores with exceptional characteristics for live-cell imaging. In particular, the development of FPs for fluorescence (or Forster) resonance energy transfer (FRET) microscopy is providing important tools for monitoring dynamic protein interactions inside living cells. The increased interest in FRET microscopy has driven the development of many different methods to measure FRET. However, the interpretation of FRET measurements is complicated by several factors including the high fluorescence background, the potential for photoconversion artifacts and the relatively low dynamic range afforded by this technique. Here, we describe the advantages and disadvantages of four methods commonly used in FRET microscopy. We then discuss the selection of FPs for the different FRET methods, identifying the most useful FP candidates for FRET microscopy. The recent success in expanding the FP color palette offers the opportunity to explore new FRET pairs.
机译:来自多种生物的新型荧光蛋白(FPs)的发现和工程改造产生了具有卓越特征的活细胞成像荧光团。特别是,用于荧光(或Forster)共振能量转移(FRET)显微镜的FP的开发为监测活细胞内部动态蛋白质相互作用提供了重要的工具。对FRET显微镜的兴趣日益增加,已推动了许多不同的方法来测量FRET。但是,FRET测量的解释受多种因素的影响,包括高荧光背景,潜在的光转换伪像以及此技术提供的相对较低的动态范围。在这里,我们描述了FRET显微镜中常用的四种方法的优缺点。然后,我们讨论用于不同FRET方法的FP的选择,确定最有用的FP显微镜候选FP。最近在扩展FP调色板方面的成功提供了探索新的FRET对的机会。

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