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首页> 外文期刊>International Journal of Molecular Sciences >COMBO-FISH Enables High Precision Localization Microscopy as a Prerequisite for Nanostructure Analysis of Genome Loci
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COMBO-FISH Enables High Precision Localization Microscopy as a Prerequisite for Nanostructure Analysis of Genome Loci

机译:COMBO-FISH使高精度定位显微镜成为基因组基因座纳米结构分析的前提

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摘要

With the completeness of genome databases, it has become possible to develop a novel FISH (Fluorescence in Situ Hybridization) technique called COMBO-FISH (COMBinatorial Oligo FISH). In contrast to other FISH techniques, COMBO-FISH makes use of a bioinformatics approach for probe set design. By means of computer genome database searching, several oligonucleotide stretches of typical lengths of 15–30 nucleotides are selected in such a way that all uniquely colocalize at the given genome target. The probes applied here were Peptide Nucleic Acids (PNAs)—synthetic DNA analogues with a neutral backbone—which were synthesized under high purity conditions. For a probe repetitively highlighted in centromere 9, PNAs labeled with different dyes were tested, among which Alexa 488® showed reversible photobleaching (blinking between dark and bright state) a prerequisite for the application of SPDM (Spectral Precision Distance/Position Determination Microscopy) a novel technique of high resolution fluorescence localization microscopy. Although COMBO-FISH labeled cell nuclei under SPDM conditions sometimes revealed fluorescent background, the specific locus was clearly discriminated by the signal intensity and the resulting localization accuracy in the range of 10–20 nm for a detected oligonucleotide stretch. The results indicate that COMBO-FISH probes with blinking dyes are well suited for SPDM, which will open new perspectives on molecular nanostructural analysis of the genome.
机译:随着基因组数据库的完整性,开发一种称为COMBO-FISH(COMBinatorial Oligo FISH)的新型FISH(荧光原位杂交)技术成为可能。与其他FISH技术相反,COMBO-FISH使用生物信息学方法进行探针集设计。通过计算机基因组数据库搜索,选择了几种典型长度为15–30个核苷酸的寡核苷酸链段,以使它们全部唯一地共定位于给定的基因组靶标。此处使用的探针是肽核酸(PNAs)-具有中性骨架的合成DNA类似物-在高纯度条件下合成。对于在着丝粒9中重复突出显示的探针,测试了用不同染料标记的PNA,其中Alexa 488 ®表现出可逆的光漂白作用(在黑暗和明亮状态之间闪烁),这是应用SPDM(光谱精确度)的前提条件距离/位置确定显微镜)是高分辨率荧光定位显微镜的一种新技术。尽管在SPDM条件下用COMBO-FISH标记的细胞核有时会显示出荧光背景,但是通过检测到的寡核苷酸序列的信号强度和在10-20 nm范围内的定位精度,可以清楚地区分特定的基因座。结果表明,带有闪烁染料的COMBO-FISH探针非常适合SPDM,这将为基因组的分子纳米结构分析开辟新的前景。

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