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LNA-modified oligonucleotides are highly efficient as FISH probes

机译:LNA修饰的寡核苷酸作为FISH探针非常有效

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Fluorescence in situ hybridization (FISH) is a highly useful technique with a wide range of applications including the delineation of complex karyotypes, prenatal diagnosis of aneuploidies, screening for diagnostic or prognostic markers in cancer cells, gene mapping and gene expression studies. However, it is still a fairly time-consuming method with limitations in both sensitivity and resolution. Locked Nucleic Acids (LNAs) constitute a novel class of RNA analogs that have an exceptionally high affinity towards complementary DNA and RNA. Substitution of DNA oligonucleotide probes with LNA has shown to significantly increase their thermal duplex stability as well as to improve the discrimination between perfectly matched and mismatched target nucleic acids. To exploit the improved hybridization properties of LNA oligonucleotides in FISH, we have designed several LNA substituted oligonucleotide probes specific to different human-specific repetitive elements, such as the classical satellite-2, telomere and alpha-satellite repeats. In the present study we show that LNA modified oligonucleotides are excellent probes in FISH, combining high binding affinity with short hybridization time.
机译:荧光原位杂交(FISH)是一种非常有用的技术,具有广泛的应用,包括勾勒复杂的核型,产前诊断非整倍性,筛选癌细胞中的诊断或预后标志物,基因作图和基因表达研究。但是,它仍然是一个相当耗时的方法,在灵敏度和分辨率上都有局限性。锁核酸(LNA)构成了一类新颖的RNA类似物,对互补DNA和RNA具有极高的亲和力。用LNA取代DNA寡核苷酸探针已显示出显着提高其热双链体稳定性,并改善了完全匹配和错配的靶核酸之间的区别。为了利用FISH中LNA寡核苷酸的改进的杂交特性,我们设计了几种LNA取代的寡核苷酸探针,这些探针对不同的人类特异性重复元件具有特异性,例如经典的Satellite-2,端粒和α-卫星重复序列。在本研究中,我们显示LNA修饰的寡核苷酸是FISH的优秀探针,结合了高结合亲和力和较短的杂交时间。

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