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Construction and optimization of an efficient amplification method of a random ssDNA library by asymmetric emulsion PCR

机译:不对称乳液PCR构建有效的随机ssDNA文库扩增方法

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摘要

Construction of a random ssDNA sublibrary is an important step of the aptamer screening process. The available construction methods include asymmetric PCR, biotin–streptavidin separation, and lambda exonuclease digestions, in which PCR amplification is a key step. The main drawback of PCR amplification is overamplification increasing nonspecific hybridization among different products and by‐products, which may cause the loss of potential high‐quality aptamers, inefficient screening, and even screening failure. Cycle number optimization in PCR amplification is the main way to avoid overamplification but does not fundamentally eliminate the nonspecific hybridization, and the decreased cycle number may lead to insufficient product amounts. Here, we developed a new method, “asymmetric emulsion PCR,” which could overcome the shortcomings of conventional PCR. In asymmetric emulsion PCR, different templates were separated by emulsion particles, allowing single‐molecule PCR, in which each template was separately amplified, and the nonspecific hybridization was avoided. Overamplification or formation of by‐products was not observed. The method is so simple that direct amplification of 40 or more cycles can provide a high‐quality ssDNA library. Therefore, the asymmetric emulsion PCR would improve the screening efficiency of systematic evolution of ligands by exponential enrichment.
机译:构建随机的ssDNA子库是适体筛选过程的重要步骤。可用的构建方法包括不对称PCR,生物素-链霉亲和素分离和λ核酸外切酶消化,其中PCR扩增是关键步骤。 PCR扩增的主要缺点是过度扩增会增加不同产物和副产物之间的非特异性杂交,这可能会导致潜在的高质量适体丧失,筛选效率低下,甚至筛选失败。 PCR扩增中的循环数优化是避免过度扩增的主要方法,但并未从根本上消除非特异性杂交,循环数减少可能导致产物量不足。在这里,我们开发了一种新方法“不对称乳液PCR”,它可以克服常规PCR的缺点。在不对称乳液PCR中,不同的模板被乳液颗粒分开,允许单分子PCR,其中每个模板分别扩增,避免了非特异性杂交。未观察到过度扩增或副产物形成。该方法非常简单,可以直接扩增40个或更多的循环,从而提供高质量的ssDNA文库。因此,不对称乳液PCR将通过指数富集提高配体系统进化的筛选效率。

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