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Differentially Painting Human Chromosome Arms with Combined Binary Ratio-labeling Fluorescence In Situ Hybridization

机译:结合二元比率标记荧光原位杂交差异绘制人类染色体臂。

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摘要

Recently we developed a novel strategy for differentially painting all 24 human chromosomes. It is termed COBRA–FISH, short for combined binary ratio labeling–fluorescence in situ hybridization. COBRA–FISH is distinct from the pure combinatorial approach in that only 4 instead of 5 fluorophores are needed to achieve color discrimination of 24 targets. Furthermore, multiplicity can be increased to 48 by introduction of a fifth fluorophore. Here we show that color identification by COBRA–FISH of all of the p and q arms of human chromosomes is feasible, and we apply the technique for detecting and elucidating intra- and interchromosomal rearrangements. Compared with 24-color whole chromosome painting FISH, PQ-COBRA–FISH considerably enhances the ability to determine the composition of rearranged chromosomes as demonstrated by the identification of pericentric inversions and isochromosomes as well as the elucidation of the arm identity of chromosomal material involved in complex translocations that occur in solid tumors.
机译:最近,我们开发了一种差异化绘画所有24条人类染色体的新颖策略。它被称为COBRA–FISH,是组合二元比率标记–荧光原位杂交的缩写。 COBRA–FISH与纯组合方法的区别在于,仅需要4个而不是5个荧光团即可实现24个目标的颜色区分。此外,通过引入第五种荧光团可以将多样性增加到48。在这里,我们证明了通过COBRA–FISH对人类染色体的所有p和q臂进行颜色识别是可行的,并且我们将这种技术应用于检测和阐明染色体内和染色体间的重排。与24色全染色体涂漆FISH相比,PQ-COBRA–FISH大大增强了确定重排染色体组成的能力,这一点通过确定周向倒位和等染色体以及阐明所涉及的染色体物质的臂身份来证明在实体瘤中发生复杂的易位。

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