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首页> 外文期刊>Molecular and Cellular Probes: The Location, Diagnosis and Monitoring of Disease by Specific Molecules and Cell Lines >Blocking oligo-a novel approach for improving chip-based DNA hybridization efficiency.
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Blocking oligo-a novel approach for improving chip-based DNA hybridization efficiency.

机译:阻断寡核苷酸-一种提高基于芯片的DNA杂交效率的新颖方法。

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For most of the commonly used DNA chips, the probes are usually single-stranded oligonucleotides and the targets are double-stranded DNAs (dsDNAs). Only one strand of the DNA serves as the target while the other competes with the probes immobilized on the chip for the target and therefore is regarded as the interfering strand. In this report, a novel technique was developed for improving the hybridization efficiency on DNA chips by using blocking oligos, which is complimentary to the target interfering strand to reduce the influence of the interfering strand. The hybridization efficiency of dsDNA was much lower than that of single-stranded DNA (ssDNA) when synthesized DNA targets were tested on the DNA chip. Blocking oligos can improve the hybridization efficiency of dsDNA to about 2/3 that of ssDNA. Blocking oligos have also been applied to PCR products of different lengths for hybridization. The hybridization efficiency with blocking oligos is about three times higher than that without blocking oligos. We have tested PCR products of 1054 and 435 bp using our blocking procedure, and the results are consistent.
机译:对于大多数常用的DNA芯片,探针通常是单链寡核苷酸,而靶标是双链DNA(dsDNA)。 DNA中只有一条链用作靶标,而另一条与固定在芯片上的探针竞争该靶标,因此被视为干扰链。在本报告中,开发了一种新技术,可通过使用封闭寡核苷酸来提高在DNA芯片上的杂交效率,该寡核苷酸与靶干扰链互补,以减少干扰链的影响。在DNA芯片上测试合成的DNA靶标时,dsDNA的杂交效率远低于单链DNA(ssDNA)。封闭的寡核苷酸可以将dsDNA的杂交效率提高到约ssDNA的2/3。封闭寡核苷酸也已应用于不同长度的PCR产物进行杂交。具有封闭寡核苷酸的杂交效率比没有封闭寡核苷酸的杂交效率高约三倍。我们已经使用封闭程序测试了1054和435 bp的PCR产物,结果是一致的。

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