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通过分支 DNA 的自组装,信号显著增强,检测灵敏度提高。

Dramatic increase in the signal and sensitivity of detection via self-assembly of branched DNA.

机构信息

Department of Biomedical Science and Technology, Institute of Biomedical Science and Technology, Konkuk University, Seoul 143-701, Korea.

出版信息

Mol Cells. 2011 Oct;32(4):367-74. doi: 10.1007/s10059-011-0121-8. Epub 2011 Aug 23.

Abstract

In molecular testing using PCR, the target DNA is amplified via PCR and the sequence of interest is investigated via hybridization with short oligonucleotide capture probes that are either in a solution or immobilized on solid supports such as beads or glass slides. In this report, we report the discovery of assembly of DNA complex(es) between a capture probe and multiple strands of the PCR product. The DNA complex most likely has branched structure. The assembly of branched DNA was facilitated by the product of asymmetric PCR. The amount of branched DNA assembled was increased five fold when the asymmetric PCR product was denatured and hybridized with a capture probe all in the same PCR reaction mixture. The major branched DNA species appeared to contain three reverse strands (the strand complementary to the capture probe) and two forward strands. The DNA was sensitive to S1 nuclease suggesting that it had single-stranded gaps. Branched DNA also appeared to be assembled with the capture probes immobilized on the surface of solid support when the product of asymmetric PCR was hybridized. Assembly of the branched DNA was also increased when hybridization was performed in complete PCR reaction mixture suggesting the requirement of DNA synthesis. Integration of asymmetric PCR, heat denaturation and hybridization in the same PCR reaction mixture with the capture probes immobilized on the surface of solid support achieved dramatic increase in the signal and sensitivity of detection of DNA. Such a system should be advantageously applied for development of automated process for detection of DNA.

摘要

在使用 PCR 的分子检测中,通过 PCR 扩增目标 DNA,通过与短寡核苷酸捕获探针杂交来研究感兴趣的序列,这些探针要么在溶液中,要么固定在固体载体上,如珠子或载玻片上。在本报告中,我们报告了发现捕获探针与 PCR 产物的多条链之间形成 DNA 复合物。该 DNA 复合物很可能具有分支结构。分支 DNA 的组装是通过不对称 PCR 的产物促进的。当不对称 PCR 产物变性并与捕获探针在同一 PCR 反应混合物中杂交时,组装的分支 DNA 量增加了五倍。主要的分支 DNA 物种似乎包含三个反向链(与捕获探针互补的链)和两个正向链。DNA 对 S1 核酸酶敏感,表明它具有单链缺口。当不对称 PCR 的产物与固定在固体载体表面的捕获探针杂交时,分支 DNA 似乎也与捕获探针组装在一起。当在包含固定在固体载体表面的捕获探针的完整 PCR 反应混合物中进行杂交时,分支 DNA 的组装也增加了,这表明需要 DNA 合成。将不对称 PCR、热变性和杂交集成到同一 PCR 反应混合物中,并将捕获探针固定在固体载体表面上,可显著提高 DNA 检测的信号和灵敏度。这种系统应该有利于开发用于检测 DNA 的自动化过程。

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