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Novel amplification of DNA in a hairpin structure: towards a radical elimination of PCR errors from amplified DNA

机译:发夹结构中DNA的新型扩增:从扩增的DNA上彻底消除PCR错误

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摘要

Errors introduced during PCR amplification set a selectivity limit for microsatellite analysis and molecular mutation detection methods since polymerase misincorporations invariably get confused with genuine mutations. Here we present hairpin-PCR, a new form of PCR that completely separates genuine mutations from polymerase misincorporations. Hairpin-PCR operates by converting a DNA sequence to a hairpin following ligation of oligonucleotide caps to DNA ends. We developed conditions that allow a DNA hairpin to be efficiently PCR-amplified so that, during DNA synthesis, the polymerase copies both DNA strands in a single pass. Consequently, when a misincorporation occurs it forms a mismatch following DNA amplification, and is distinguished from genuine mutations that remain fully matched. Error-free DNA can subsequently be isolated using one of many approaches, such as dHPLC or enzymatic depletion. We present feasibility for the main technical steps involved in this new strategy, conversion of a sequence to a hairpin that can be PCR-amplified from human genomic DNA, exponential amplification from picogram amounts, conversion of misincorporations to mismatches and separation of homoduplex from heteroduplex hairpins using dHPLC. The present hairpin-PCR opens up the possibility for a radical elimination of PCR errors from amplified DNA and a major improvement in mutation detection.
机译:在PCR扩增过程中引入的错误为微卫星分析和分子突变检测方法设置了选择性极限,因为聚合酶的错误掺入总是会与真正的突变相混淆。在这里,我们介绍发夹式PCR,这是一种新的PCR形式,可以将真正的突变与聚合酶错误掺入完全分开。发夹PCR通过将寡核苷酸帽连接至DNA末端后将DNA序列转换为发夹来进行操作。我们开发了条件,可以有效地PCR扩增DNA发夹,以便在DNA合成过程中,聚合酶可以单次复制两条DNA链。因此,当发生错误掺入时,它会在DNA扩增后形成错配,并与保持完全匹配的真正突变区分开。随后可以使用许多方法之一(例如dHPLC或酶促消耗法)分离出无错误的DNA。我们提出了这项新策略所涉及的主要技术步骤的可行性,将序列转换为可以从人类基因组DNA PCR扩增的发夹,从皮克数量进行指数扩增,错配转化为错配以及将同源双链与异源双链分离的方法使用dHPLC。本发夹PCR为彻底消除扩增DNA中的PCR错误和突变检测的重大改进开辟了可能性。

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