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首页> 外文期刊>G3: Genes, Genomes, Genetics >BiFCROS: A Low-Background Fluorescence Repressor Operator System for Labeling of Genomic Loci
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BiFCROS: A Low-Background Fluorescence Repressor Operator System for Labeling of Genomic Loci

机译:BiFCROS:一种用于标记基因组位点的低背景荧光阻遏物操纵子系统

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摘要

Fluorescence-based methods are widely used to analyze elementary cell processes such as DNA replication or chromosomal folding and segregation. Labeling DNA with a fluorescent protein allows the visualization of its temporal and spatial organization. One popular approach is FROS (fluorescence repressor operator system). This method specifically labels DNA in vivo through binding of a fusion of a fluorescent protein and a repressor protein to an operator array, which contains numerous copies of the repressor binding site integrated into the genomic site of interest. Bound fluorescent proteins are then visible as foci in microscopic analyses and can be distinguished from the background fluorescence caused by unbound fusion proteins. Even though this method is widely used, no attempt has been made so far to decrease the background fluorescence to facilitate analysis of the actual signal of interest. Here, we present a new method that greatly reduces the background signal of FROS. BiFCROS (Bimolecular Fluorescence Complementation and Repressor Operator System) is based on fusions of repressor proteins to halves of a split fluorescent protein. Binding to a hybrid FROS array results in fluorescence signals due to bimolecular fluorescence complementation. Only proteins bound to the hybrid FROS array fluoresce, greatly improving the signal to noise ratio compared to conventional FROS. We present the development of BiFCROS and discuss its potential to be used as a fast and single-cell readout for copy numbers of genetic loci.
机译:基于荧光的方法被广泛用于分析基本细胞过程,例如DNA复制或染色体折叠和分离。用荧光蛋白标记DNA可以可视化其时间和空间组织。一种流行的方法是FROS(荧光阻遏物操纵子系统)。该方法通过将荧光蛋白和阻遏蛋白的融合体结合到操纵子阵列上,在体内特异性标记DNA,该操纵子阵列包含整合入目标基因组位点的阻遏蛋白结合位点的许多拷贝。然后,结合的荧光蛋白在显微镜分析中作为焦点可见,并且可以与未结合的融合蛋白引起的背景荧光区分开。尽管该方法被广泛使用,但迄今为止尚未尝试减少背景荧光以促进对实际感兴趣信号的分析。在这里,我们提出了一种新的方法,可以大大降低FROS的背景信号。 BiFCROS(双分子荧光互补和阻遏物操纵子系统)基于阻遏蛋白与分裂的荧光蛋白一半的融合。由于双分子荧光互补,与杂交FROS阵列的结合会导致荧光信号。与传统FROS相比,只有与杂交FROS阵列结合的蛋白质才发出荧光,从而大大提高了信噪比。我们介绍了BiFCROS的发展,并讨论了其潜力,可用于快速和单细胞读取基因座的拷贝数。

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