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Synthesis of Wavelength-shifting DNA Hybridization Probes by Using Photostable Cyanine Dyes

机译:光稳定性花菁染料的合成波长漂移DNA杂交探针

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摘要

In this protocol, we demonstrate a method for the synthesis of 2'-alkyne modified deoxyribonucleic acid (DNA) strands by automated solid phase synthesis using standard phosphoramidite chemistry. Oligonucleotides are post-synthetically labeled by two new photostable cyanine dyes using copper-catalyzed click-chemistry. The synthesis of both donor and acceptor dye is described and is performed in three consecutive steps. With the DNA as the surrounding architecture, these two dyes undergo an energy transfer when they are brought into close proximity by hybridization. Therefore, annealing of two single stranded DNA strands is visualized by a change of fluorescence color. This color change is characterized by fluorescence spectroscopy but can also be directly observed by using a handheld ultraviolet (UV) lamp. The concept of a dual fluorescence color readout makes these oligonucleotide probes excellent tools for molecular imaging especially when the described photostable dyes are used. Thereby, photobleaching of the imaging probes is prevented, and biological processes can be observed in real time for a longer time period.
机译:在此协议中,我们演示了一种使用标准亚磷酰胺化学方法通过自动固相合成方法合成2'-炔烃修饰的脱氧核糖核酸(DNA)链的方法。寡核苷酸通过铜催化的点击化学反应被两种新的光稳定性花菁染料合成后标记。描述了供体和受体染料的合成,并在三个连续的步骤中进行。以DNA为周围结构,这两种染料在通过杂交紧密接近时会进行能量转移。因此,两条单链DNA链的退火通过荧光颜色的变化可视化。这种颜色变化的特征在于荧光光谱,但也可以通过使用手持式紫外线(UV)灯直接观察到。双重荧光颜色读数的概念使这些寡核苷酸探针成为分子成像的极佳工具,尤其是在使用所述的光稳定染料时。从而,防止了成像探针的光漂白,并且可以在更长的时间段内实时观察生物过程。

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