首页> 外文期刊>Nucleic Acids Research >Quantification of mRNA expression by competitive PCR using non-homologous competitors containing a shifted restriction site.
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Quantification of mRNA expression by competitive PCR using non-homologous competitors containing a shifted restriction site.

机译:使用含有移位限制位点的非同源竞争物,通过竞争PCR对mRNA表达进行定量。

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摘要

Despite the recent introduction of real-time PCR methods, competitive PCR techniques continue to play an important role in nucleic acid quantification because of the significantly lower cost of equipment and consumables. Here we describe a shifted restriction-site competitive PCR (SRS-cPCR) assay based on a modified type of competitor. The competitor fragments are designed to contain a recognition site for a restriction endonuclease that is also present in the target sequence to be quantified, but in a different position. Upon completion of the PCR, the amplicons are digested in the same tube with a single restriction enzyme, without the need to purify PCR products. The generated competitor- and target-specific restriction fragments display different sizes, and can be readily separated by electrophoresis and quantified by image analysis. Suboptimal digestion affects competitor- and target-derived amplicons to the same extent, thus eliminating the problem of incorrect quantification as a result of incomplete digestion of PCR products. We have established optimized conditions for a panel of 20 common restriction endonucleases permitting efficient digestion in PCR buffer. It is possible, therefore, to find a suitable restriction site for competitive PCR in virtually any sequence of interest. The assay presented is inexpensive, widely applicable, and permits reliable and accurate quantification of nucleic acid targets.
机译:尽管最近引入了实时PCR方法,但是竞争性PCR技术仍在核酸定量中起着重要作用,因为设备和消耗品的成本大大降低。在这里,我们描述了一种基于竞争者改良型的移动限制性位点竞争PCR(SRS-cPCR)分析方法。竞争片段设计为包含限制性核酸内切酶的识别位点,该核酸也存在于待定量的靶序列中,但位置不同。 PCR完成后,无需纯化PCR产物,即可在同一试管中用单一限制酶消化扩增子。产生的竞争者和目标特异性限制片段显示不同的大小,可以很容易地通过电泳分离并通过图像分析进行定量。次优消化对竞争者和靶标扩增子的影响程度相同,从而消除了由于PCR产物消化不完全而导致定量错误的问题。我们为20种常见的限制性内切核酸酶建立了优化的条件,以允许在PCR缓冲液中有效消化。因此,有可能在几乎任何感兴趣的序列中找到合适的限制性酶切位点用于竞争性PCR。提出的测定法便宜,可广泛应用,并允许可靠,准确地定量核酸靶标。

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