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Three-color spectral FRET microscopy localizes three interacting proteins in living cells.

机译:三色光谱FRET显微镜在活细胞中定位了三种相互作用的蛋白质。

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摘要

FRET technologies are now routinely used to establish the spatial relationships between two cellular components (A and B). Adding a third target component (C) increases the complexity of the analysis between interactions AB/BC/AC. Here, we describe a novel method for analyzing a three-color (ABC) FRET system called three-color spectral FRET (3sFRET) microscopy, which is fully corrected for spectral bleedthrough. The approach quantifies FRET signals and calculates the apparent energy transfer efficiencies (Es). The method was validated by measurement of a genetic (FRET standard) construct consisting of three different fluorescent proteins (FPs), mTFP, mVenus, and tdTomato, linked sequentially to one another. In addition, three 2-FP reference constructs, tethered in the same way as the 3-FP construct, were used to characterize the energy transfer pathways. Fluorescence lifetime measurements were employed to compare the relative relationships between the FPs in cells producing the 3-FP and 2-FP fusion proteins. The 3sFRET microscopy method was then applied to study the interactions of the dimeric transcription factor C/EBPalpha (expressing mTFP or mVenus) with the heterochromatin protein 1alpha (HP1alpha, expressing tdTomato) in live-mouse pituitary cells. We show how the 3sFRET microscopy method represents a promising live-cell imaging technique to monitor the interactions between three labeled cellular components.
机译:现在常规使用FRET技术来建立两个细胞成分(A和B)之间的空间关系。添加第三个目标成分(C)增加了交互作用AB / BC / AC之间的分析复杂性。在这里,我们描述了一种用于分析称为三色光谱FRET(3sFRET)显微镜的三色(ABC)FRET系统的新颖方法,该方法已针对光谱渗漏进行了完全校正。该方法量化FRET信号并计算视在能量传输效率(Es)。通过测量一种遗传(FRET标准)构建体,验证了该方法,该构建体由三种不同的荧光蛋白(FPs),mTFP,mVenus和tdTomato顺序连接而成。另外,以与3-FP构建体相同的方式束缚的三个2-FP参考构建体用于表征能量传递途径。使用荧光寿命测量来比较产生3-FP和2-FP融合蛋白的细胞中FP之间的相对关系。然后使用3sFRET显微镜方法研究活小鼠垂体细胞中二聚体转录因子C / EBPalpha(表达mTFP或mVenus)与异染色质蛋白1alpha(HP1alpha,表达tdTomato)的相互作用。我们展示了3sFRET显微镜方法如何代表一种有前途的活细胞成像技术,以监测三个标记的细胞成分之间的相互作用。

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