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Detection of point mutations with a modified ligase chain reaction (Gap-LCR).

机译:使用修饰的连接酶链反应(Gap-LCR)检测点突变。

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摘要

DNA amplification systems are powerful technologies with the potential to impact a wide range of diagnostic applications. In this study we explored the feasibility and limitations of a modified ligase chain reaction (Gap-LCR) in detection and discrimination of DNAs that differ by a single base. LCR is a DNA amplification technology based on the ligation of two pairs of synthetic oligonucleotides which hybridize at adjacent positions to complementary strands of a target DNA. Multiple rounds of denaturation, annealing and ligation with a thermostable ligase result in the exponential amplification of the target DNA. A modification of LCR, Gap-LCR was developed to reduce the background generated by target-independent, blunt-end ligation. In Gap-LCR, DNA polymerase fills in a gap between annealed probes which are subsequently joined by DNA ligase. We have designed synthetic DNA targets with single base pair differences and analyzed them in a system where three common probes plus an allele-specific probe were used. A single base mismatch either at the ultimate 3' end or penultimate 3' end of the allele specific probe was sufficient for discrimination, though better discrimination was obtained with a mismatch at the penultimate 3' position. Comparison of Gap-LCR to allele-specific PCR (ASPCR) suggested that Gap-LCR has the advantage of having the additive effect of polymerase and ligase on specificity. As a model system, Gap-LCR was tested on a mutation in the reverse transcriptase gene of HIV, specifically, one of the mutations that confers AZT resistance. Mutant DNA could be detected and discriminated in the presence of up to 10,000-fold excess of wild-type DNA.
机译:DNA扩增系统是功能强大的技术,有可能影响广泛的诊断应用。在这项研究中,我们探索了修饰的连接酶链反应(Gap-LCR)在检测和区分单个碱基差异的DNA方面的可行性和局限性。 LCR是一种基于两对合成寡核苷酸的连接的DNA扩增技术,所述合成寡核苷酸在相邻位置与靶DNA的互补链杂交。多轮变性,退火和与热稳定的连接酶的连接导致靶DNA的指数扩增。开发了LCR的修饰物Gap-LCR,以减少由靶标无关的平末端连接产生的背景。在Gap-LCR中,DNA聚合酶填充了退火探针之间的间隙,随后通过DNA连接酶将其连接在一起。我们设计了具有单碱基对差异的合成DNA靶标,并在使用三个通用探针加一个等位基因特异性探针的系统中对其进行了分析。在等位基因特异性探针的最终3'末端或倒数第二个3'末端单碱基错配足以区分,尽管倒数第二个3'位置有错配可以得到更好的区分。 Gap-LCR与等位基因特异性PCR(ASPCR)的比较表明,Gap-LCR具有聚合酶和连接酶对特异性具有加和作用的优势。作为模型系统,对HIV逆转录酶基因中的突变(特别是赋予AZT抗性的突变之一)进行了Gap-LCR测试。在存在多达10,000倍过量的野生型DNA的情况下,可以检测到突变的DNA并加以区分。

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