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High-density multiplex detection of nucleic acid sequences: oligonucleotide ligation assay and sequence-coded separation.

机译:核酸序列的高密度多重检测:寡核苷酸连接测定和序列编码的分离。

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摘要

We describe a non-isotopic, semi-automated method for large-scale multiplex analysis of nucleic acid sequences, using the cystic fibrosis transmembrane regulator (CFTR) gene as an example. Products of a multiplex oligonucleotide ligation assay (OLA) are resolved electrophoretically from one another and from unligated probes under denaturing conditions with fluorescence detection. One ligation probe for each OLA target carries a fluorescent tag, while the other probe carries an oligomeric non-nucleotide mobility modifier. Each OLA product has a unique electrophoretic mobility determined by the ligated oligonucleotides and the mobility-modifier oligomer arbitrarily assigned (coded) to its target. The mobility range for practical mobility modifiers is much wider than the accessible range from unmodified ligated oligonucleotides of practical length. Each mobility modifier is built from phosphoramidite monomers in a stepwise manner on its associated oligonucleotide using an automated synthesizer. The resulting mobility modifiers lower the probe-target duplex Tm by less than 3 degrees C and retard probe-target annealing by less than 50%, with negligible effect on OLA yield and specificity. This method is especially useful for allelic discrimination in highly polymorphic genes such as CFTR.
机译:我们描述了一个非同位素,半自动化的方法,以囊性纤维化跨膜调节剂(CFTR)基因为例,对核酸序列进行大规模多重分析。多重寡核苷酸连接测定法(OLA)的产物在变性条件下通过荧光检测彼此电泳分离,并与未连接的探针电泳分离。每个OLA靶标的一个连接探针带有一个荧光标签,而另一个探针带有一个寡聚的非核苷酸迁移率修饰剂。每个OLA产品都有一个独特的电泳迁移率,该迁移率是由连接的寡核苷酸和任意分配(编码)到其靶标的迁移率修饰剂低聚物确定的。实际迁移率修饰剂的迁移率范围比实际长度的未修饰的连接寡核苷酸可及的范围宽得多。使用自动合成仪,由亚磷酰胺单体以逐步方式在其相关的寡核苷酸上构建每种迁移率修饰剂。所得的迁移率调节剂将探针-靶标双链体Tm降低了不到3摄氏度,并将探针-靶标退火延迟了不到50%,对OLA产量和特异性的影响可忽略不计。该方法对于高度多态性基因(例如CFTR)中的等位基因识别特别有用。

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