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Electrophoresis for genotyping: temporal thermal gradient gel electrophoresis for profiling of oligonucleotide dissociation.

机译:基因分型的电泳:时间热梯度凝胶电泳用于分析寡核苷酸的解离。

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摘要

Traditional use of an oligonucleotide probe to determine genotype depends on perfect base pairing to a single-stranded target which is stable to a higher temperature than when imperfect binding occurs due to a mismatch in the target sequence. Bound oligonucleotide is detected at a predetermined single temperature 'snapshot' of the melting profile, allowing the distinction of perfect from imperfect base pairing. In heterozygotes, the presence of the alternative sequence must be verified with a second oligonucleotide complementary to the variant. Here we describe a system of real-time variable temperature electrophoresis during which the oligonucleotide dissociates from its target. In 20% polyacrylamide the target strand has minimal mobility and released oligonucleotide migrates extremely quickly so that the 'freed' rather than the 'bound' is displayed. The full profile of oligonucleotide dissociation during gel electrophoresis is represented along the gel track, and a single oligonucleotide is sufficient to confirm heterozygosity, since the profile displays two separate peaks. Resolution is great, with use of short track lengths enabling analysis of dense arrays of samples. Each gel track can contain a different target or oligonucleotide and the temperature gradient can accommodate oligonucleotides of different melting temperatures. This provides a convenient system to examine the interaction of many different oligonucleotides and target sequences simultaneously and requires no prior knowledge of the mutant sequence(s) nor of oligonucleotide melting temperatures. The application of the technique is described for screening of a hotspot for mutations in the LDL receptor gene in patients with familial hypercholesterolaemia.
机译:寡核苷酸探针用于确定基因型的传统用途取决于与单链靶标的完美碱基配对,该单链靶标与因靶序列不匹配而发生不完美结合的情况相比,在更高的温度下稳定。在熔解曲线的预定单个温度“快照”中检测到结合的寡核苷酸,从而可以区分完美碱基配对和不完美碱基配对。在杂合子中,必须用与变体互补的第二个寡核苷酸验证替代序列的存在。在这里,我们描述了实时可变温度电泳系统,在此期间寡核苷酸从其靶标解离。在20%的聚丙烯酰胺中,目标链具有最小的迁移率,释放的寡核苷酸极快地迁移,因此显示出“释放”而不是“结合”。凝胶电泳过程中寡核苷酸解离的完整图谱沿凝胶轨迹显示,单个寡核苷酸足以确认杂合性,因为该图谱显示两个单独的峰。分辨率很高,使用较短的轨道长度可以分析密集的样品阵列。每个凝胶轨道可以包含不同的靶标或寡核苷酸,并且温度梯度可以容纳具有不同解链温度的寡核苷酸。这提供了方便的系统来同时检查许多不同的寡核苷酸和靶序列的相互作用,并且不需要对突变序列或寡核苷酸解链温度具有先验知识。描述了该技术的应用,用于筛选家族性高胆固醇血症患者的LDL受体基因突变的热点。

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