首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Simultaneous detection of 19 K-ras mutations by free-solution conjugate electrophoresis of ligase detection reaction products on glass microchips
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Simultaneous detection of 19 K-ras mutations by free-solution conjugate electrophoresis of ligase detection reaction products on glass microchips

机译:通过玻璃微芯片上的连接酶检测反应产物的自由溶液共轭电泳同时检测19 K-ras突变

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摘要

We demonstrate here the power and flexibility of free-solution conjugate electrophoresis (FSCE) as a method of separating DNA fragments by electrophoresis with no sieving polymer network. Previous work introduced the coupling of FSCE with ligase detection reaction (LDR) to detect point mutations, even at low abundance compared to the wild-type DNA. Here, four large drag-tags are used to achieve free-solution electrophoretic separation of 19 LDR products ranging in size from 42 to 66 nt that correspond to mutations in the K-ras oncogene. LDR-FSCE enabled electrophoretic resolution of these 19 LDR-FSCE products by CE in 13.5 min (E = 310 V/cm) and by microchip electrophoresis in 140 s (E = 350 V/cm). The power of FSCE is demonstrated in the unique characteristic of free-solution separations where the separation resolution is constant no matter the electric field strength. By microchip electrophoresis, the electric field was increased to the maximum of the power supply (E = 700 V/cm), and the 19 LDR-FSCE products were separated in less than 70 s with almost identical resolution to the separation at E = 350 V/cm. These results will aid the goal of screening K-ras mutations on integrated "sample-in/answer-out" devices with amplification, LDR, and detection all on one platform.
机译:我们在这里展示了自由溶液共轭电泳(FSCE)的强大功能和灵活性,它是一种无需筛分聚合物网络即可通过电泳分离DNA片段的方法。先前的工作介绍了FSCE与连接酶检测反应(LDR)的结合,以检测点突变,即使与野生型DNA相比,其丰度也很低。在这里,使用四个大的标签来实现19种LDR产物的自由溶液电泳分离,这些产物的大小在42到66 nt之间,与K-ras癌基因的突变相对应。 LDR-FSCE可以通过CE在13.5分钟(E = 310 V / cm)中和通过微芯片电泳在140 s(E = 350 V / cm)中对这19种LDR-FSCE产品进行电泳分离。 FSCE的强大功能体现在自由溶液分离的独特特性中,无论电场强度如何,分离分辨率都是恒定的。通过微芯片电泳,电场增加到最大电源电压(E = 700 V / cm),并且在不到70 s的时间内分离出19种LDR-FSCE产品,其分辨率几乎与E = 350时的分离度相同。 V /厘米这些结果将有助于在一个平台上通过放大,LDR和检测在集成的“输入/输出”设备上筛选K-ras突变的目标。

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