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New methods as alternative or corrective measures for the pitfalls and artifacts of reverse transcription and polymerase chain reactions (RT-PCR) in cloning chimeric or antisense-accompanied RNA

机译:在克隆嵌合或反义RNA时作为逆转录和聚合酶链反应(RT-PCR)缺陷和缺陷的替代方法或纠正措施的新方法

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We established new methods for cloning cDNA ends that start with reverse transcription (RT) and soon proceed with the synthesis of the second cDNA strand, avoiding manipulations of fragile RNA. Our 3′-end cloning method does not involve poly-dT primers and polymerase chain reactions (PCR), is low in efficiency but high in fidelity and can clone those RNAs without a poly-A tail. We also established a cDNA protection assay to supersede RNA protection assay. The protected cDNA can be amplified, cloned and sequenced, enhancing sensitivity and fidelity. We report that RT product using gene-specific primer (GSP) cannot be gene- or strand-specific because RNA sample contains endogenous random primers (ERP). The gene-specificity may be improved by adding a linker sequence at the 5′-end of the GSP to prime RT and using the linker as a primer in the ensuing PCR. The strand-specificity may be improved by using strand-specific DNA oligos in our protection assay. The CDK4 mRNA and TSPAN31 mRNA are transcribed from the opposite DNA strands and overlap at their 3′ ends. Using this relationship as a model, we found that the overlapped sequence might serve as a primer with its antisense as the template to create a wrong-template extension in RT or PCR. We infer that two unrelated RNAs or cDNAs overlapping at the 5′- or 3′-end might create a spurious chimera in this way, and many chimeras with a homologous sequence may be such artifacts. The ERP and overlapping antisense together set complex pitfalls, which one should be aware of.
机译:我们建立了克隆以反转录(RT)开头的cDNA末端的新方法,并很快进行了第二条cDNA链的合成,避免了对易碎RNA的操纵。我们的3'端克隆方法不涉及poly-dT引物和聚合酶链反应(PCR),效率低但保真度高,并且可以克隆没有poly-A尾巴的RNA。我们还建立了cDNA保护检测方法来取代RNA保护检测方法。可以对受保护的cDNA进行扩增,克隆和测序,从而提高灵敏度和保真度。我们报告使用基因特异性引物(GSP)的RT产品不能是基因或链特异性的,因为RNA样品含有内源性随机引物(ERP)。可以通过在GSP的5'末端添加一个接头序列以引发RT并在随后的PCR中将该接头用作引物来改善基因特异性。通过在我们的保护性检测中使用链特异性DNA寡核苷酸,可以改善链特异性。 CDK4 mRNA和TSPAN31 mRNA从相反的DNA链转录并在其3'端重叠。使用这种关系作为模型,我们发现重叠序列可以用作引物,其反义为模板,从而在RT或PCR中产生错误的模板延伸。我们推断,在5'-或3'-末端重叠的两个不相关的RNA或cDNA可能会以此方式产生假的嵌合体,而许多具有同源序列的嵌合体可能就是这种假象。 ERP和重叠的反义词共同设置了一个复杂的陷阱,这一点应该注意。

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