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Hinge-initiated Primer-dependent Amplification of Nucleic Acids (HIP) – A New Versatile Isothermal Amplification Method

机译:铰链启动的引物依赖性核酸扩增(HIP)–一种新型的等温扩增方法

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摘要

The growing demand for cost-effective nucleic acid detection assays leads to an increasing number of different isothermal amplification reaction methods. However, all of the most efficient methods suffer from highly complex assay conditions due to the use of complicated primer sets and/or auxiliary enzymes. The present study describes the application of a new linker moiety that can be incorporated between a primer and a secondary target binding site which can act both as a block to polymerase extension as well as a hinge for refolding. This novel “hinge-primer” approach results in an efficient regeneration of the primer binding site and thus improves the strand-displacement and amplification process under isothermal conditions. Our investigations revealed that the reaction with forward and reverse hinge-primer including an abasic site is very efficient. The assay complexity can be reduced by combining the hinge-primer with a corresponding linear primer. Furthermore, the reaction speed can be increased by reducing the length of the amplified target sequence. We tested the sensitivity down to 104 copies and found a linear correlation between reaction time and input copy number. Our approach overcomes the usually cumbersome primer-design and extends the range of isothermal amplification methods using a polymerase with strand-displacement activity.
机译:对具有成本效益的核酸检测测定法的日益增长的需求导致越来越多的不同等温扩增反应方法。然而,由于使用复杂的引物组和/或辅助酶,所有最有效的方法都具有高度复杂的测定条件。本研究描述了一种新的接头部分的应用,该接头部分可以掺入引物和次级靶结合位点之间,该位点既可以充当聚合酶延伸的嵌段,也可以充当重折叠的铰链。这种新颖的“铰链引物”方法可有效地再生引物结合位点,从而改善等温条件下的链置换和扩增过程。我们的研究表明,与包括无碱基位点的正向和反向铰链引物的反应非常有效。通过将铰链引物与相应的线性引物结合可以降低测定的复杂性。此外,可以通过减少扩增的靶序列的长度来提高反应速度。我们测试了低至10 4 拷贝的灵敏度,发现反应时间与输入拷贝数之间存在线性关系。我们的方法克服了通常繁琐的引物设计,并扩展了使用具有链置换活性的聚合酶的等温扩增方法的范围。

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