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Ligase Detection Reaction for the Analysis of Point Mutations using Free Solution Conjugate Electrophoresis in a Polymer Microfluidic Device

机译:连接酶检测反应用于点突变的高分子微流控装置中的自由溶液共轭电泳分析。

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摘要

We have developed a new method for the analysis of low abundant point mutations in genomic DNA using a combination of an allele-specific ligase detection reaction (LDR) with free-solution conjugate electrophoresis (FSCE) to generate and analyze the genetic products. FSCE eliminates the need for a polymer sieving matrix by conjugating chemically synthesized polyamide “drag-tags” onto the LDR primers. The additional drag of the charge-neutral drag-tag breaks the linear scaling of the charge-to-friction ratio of DNA and enables size-based separations of DNA in free solution using electrophoresis with no sieving matrix. We successfully demonstrate the conjugation of polyamide drag-tags onto a set of four LDR primers designed to probe the K-ras oncogene for mutations highly associated with colorectal cancer, the simultaneous generation of fluorescently-labeled LDR/drag-tagged (LDR-dt) products in a multiplexed, single-tube format with mutant:wild-type ratios as low as 1:100, respectively, and the single-base, high-resolution separation of all four LDR-dt products. Separations were conducted in free solution with no polymer network using both a commercial capillary array electrophoresis (CAE) system and a poly(methylmethacrylate), PMMA, microchip replicated via hot-embossing with only a Tris-based running buffer containing additives to suppress the electroosmotic flow (EOF). Typical analysis times for LDR-dt conjugates were 11 min using the CAE system and as low as 85 s for the PMMA microchips. With resolution comparable to traditional gel-based CAE, FSCE along with microchip electrophoresis decreased the separation time by more than a factor of 40.
机译:我们已经开发了一种新的分析基因组DNA中低丰度点突变的方法,该方法结合了等位基因特异性连接酶检测反应(LDR)和自由溶液共轭电泳(FSCE)来生成和分析遗传产物。 FSCE通过将化学合成的聚酰胺“标签”缀合到LDR底漆上,消除了对聚合物筛分基质的需求。电荷中性拖曳标签的额外阻力打破了DNA电荷摩擦比的线性比例,并实现了使用无筛分基质的电泳在自由溶液中基于大小的DNA分离。我们成功地证明了聚酰胺拖曳标签在一组四个LDR引物上的缀合,这些引物旨在探测K-ras癌基因与大肠癌高度相关的突变,同时产生荧光标记的LDR / drag-tagged(LDR-dt)产品以多重,单管形式生产,突变型:野生型比例分别低至1:100,并且所有四种LDR-dt产品的单碱基高分辨率分离。使用商业毛细管阵列电泳(CAE)系统和聚甲基丙烯酸甲酯PMMA微芯片在无聚合物网络的游离溶液中进行分离,该芯片仅通过热压印复制,仅使用含添加剂的Tris基运行缓冲液来抑制电渗。流量(EOF)。使用CAE系统对LDR-dt共轭物的典型分析时间为11分钟,对于PMMA微芯片,典型分析时间为85 s。与传统的基于凝胶的CAE相比,FSCE的分辨率可与微芯片电泳相结合,将分离时间缩短了40倍以上。

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