首页> 外文期刊>Nucleic Acids Research >PCR-generated padlock probes detect single nucleotide variation in genomic DNA.
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PCR-generated padlock probes detect single nucleotide variation in genomic DNA.

机译:PCR生成的挂锁探针可检测基因组DNA中的单核苷酸变异。

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摘要

Circularizing oligonucleotide probes, so-called padlock probes, have properties that should prove valuable in a wide range of genetic investigations, including in situ analyses, genotyping and measurement of gene expression. However, padlock probes can be difficult to obtain by standard oligonucleotide synthesis because they are relatively long and require intact 5'- and 3'-end sequences to function. We describe a PCR-based protocol for flexible small-scale enzymatic synthesis of such probes. The protocol also offers the advantage over chemical synthesis that longer probes can be made that are densely labeled with detectable functions, resulting in an increased detection signal. The utility of probes synthesized according to this protocol is demonstrated for the analysis of single nucleotide variations in human genomic DNA both in situ and in solution.
机译:环化寡核苷酸探针,即所谓的“挂锁探针”,具有在广泛的遗传学研究(包括原位分析,基因分型和基因表达测量)中应具有的价值。然而,通过标准的寡核苷酸合成可能难以获得挂锁探针,因为它们相对较长并且需要完整的5'-和3'-端序列才能起作用。我们描述了基于PCR的协议的灵活小规模酶合成这类探针。该协议还提供了优于化学合成的优势,即可以制造更长的探针,这些探针用可检测的功能进行密集标记,从而导致检测信号增加。证明了根据该方案合成的探针可用于分析人类基因组DNA中原位和溶液中的单核苷酸变异。

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