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Sequence specific generation of a DNA panhandle permits PCR amplification of unknown flanking DNA.

机译:DNA泛柄的序列特异性生成可实现未知侧翼DNA的PCR扩增。

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摘要

We present a novel method for the PCR amplification of unknown DNA that flanks a known segment directly from human genomic DNA. PCR requires that primer annealing sites be present on each end of the DNA segment that is to be amplified. In this method, known DNA is placed on the uncharacterized side of the sequence of interest via DNA polymerase mediated generation of a PCR template that is shaped like a pan with a handle. Generation of this template permits specific amplification of the unknown sequence. Taq (DNA) polymerase was used to form the original template and to generate the PCR product. 2.2 kb of the beta-globin gene, and 657 bp of the 5' flanking region of the cystic fibrosis transmembrane conductance regulator gene, were amplified directly from human genomic DNA using primers that initially flank only one side of the region amplified. This method will provide a powerful tool for acquiring DNA sequence information.
机译:我们提出了一种新的PCR扩增未知DNA的方法,该方法直接从人类基因组DNA侧接了一个已知的片段。 PCR要求引物退火位点存在于要扩增的DNA片段的每个末端。在这种方法中,已知的DNA通过DNA聚合酶介导的PCR模板的生成而被置于目标序列的未表征侧,该PCR模板的形状像带有手柄的锅。该模板的产生允许未知序列的特异性扩增。 Taq(DNA)聚合酶用于形成原始模板并生成PCR产物。使用最初仅位于扩增区域一侧的引物,直接从人基因组DNA中扩增出2.2 kb的β-珠蛋白基因和657 bp的囊性纤维化跨膜电导调节基因的5'侧翼区域。该方法将提供强大的工具来获取DNA序列信息。

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