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Mismatch Extension of DNA Polymerases and High-Accuracy Single Nucleotide Polymorphism Diagnostics by Gold Nanoparticle-Improved Isothermal Amplification

机译:DNA聚合酶的错配延伸和金纳米颗粒改进的等温扩增对高精度单核苷酸多态性的诊断

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摘要

Sequence Mismatches may induce nonspecific extension reaction, causing false results for SNP diagnostics. Herein, we. systematically investigated the impact of various 3'-terminal mismatches on isothermal amplification catalyzed by reptesentative DNA polymerases. Despite their diverse efficiencies depending on types of mismatch and kinds, of DNA: polymerase, all 12 kinds of single 3'-terminal mismatches induced the extension reaction. Generally, only several mismatches (primer-template, C-C, G-A, A-G, and A-A) present an observable inhibitory effect on the amplification reaction, whereas other mismatches trigger amplified signals as high as those of Watson-Crick pairs. The related mechanism was deeply discussed, and a primer-design guideline for specific SNP analysis was summarized. Furthermore, we found that the addition of appropriate gold nanoparticles (AuNPs) can significantly inhibit mismatch extension and enhance the amplification specificity. Also the high-accuracy SNP analysis of human blood genomic DNA has been demonstrated by AuNPs-improved isothermal amplification, the result of which was verified by sequencing (the gold standard method for SNP assay). Collectively, this work provides mechanistic insight into mismatch behavior and achieves accurate SNP diagnostics, holding great potential for the application in molecular diagnostics and personalized medicine.
机译:序列不匹配可能会引起非特异性延伸反应,从而导致SNP诊断的错误结果。在这里,我们。系统地研究了各种3'-末端错配对由代表性DNA聚合酶催化的等温扩增的影响。尽管它们取决于错配类型和DNA:聚合酶种类的不同效率,所有12种单3'-末端错配均引起延伸反应。通常,只有几种错配(引物模板,C-C,G-A,A-G和A-A)对扩增反应具有可观察到的抑制作用,而其他错配会触发与Watson-Crick对一样高的扩增信号。深入讨论了相关机制,并总结了用于特定SNP分析的引物设计指南。此外,我们发现添加适当的金纳米颗粒(AuNPs)可以显着抑制错配延伸并增强扩增特异性。此外,通过AuNPs改良的等温扩增也已证明了人类血液基因组DNA的高精度SNP分析,其结果已通过测序(SNP分析的金标准方法)得到了验证。总的来说,这项工作提供了对错配行为的机械洞察力,并实现了准确的SNP诊断,在分子诊断和个性化医学中具有广阔的应用前景。

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