原位PCR和液相PCR非特异性DNA合成分析。

G J Nuovo, P MacConnell, F Gallery
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引用次数: 18

摘要

在这项研究中,我们研究了导致非特异性DNA合成的因素在原位PCR和液相PCR。结果表明,不依赖于引物的DNA合成可以在原位PCR中产生强烈的信号。这种不依赖引物的途径显然是石蜡包埋组织切片热处理后DNA间隙修复的结果。这种非特异性信号可以通过双脱氧- ttp阻断间隙修复、避免热处理或dna酶预处理来消除。与引物无关的信号也受到固定的长度和方式以及样品组织本身的影响。消除与引物无关的信号和在不含病毒的组织中使用病毒引物表明,热启动修饰可以消除非特异性DNA合成。在原位PCR中,引物寡聚化不会产生信号,即使在扩增溶液中也会产生信号。用纯化的DNA在液相PCR中产生与引物无关的信号需要交联固定剂、加热、添加牛血清白蛋白和完整的蛋白质-DNA交联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of nonspecific DNA synthesis during in situ PCR and solution-phase PCR.

In this study we examine the factors that lead to nonspecific DNA synthesis during in situ PCR and solution-phase PCR. It was shown that primer-independent DNA synthesis can produce an intense signal during in situ PCR. This primer-independent pathway was apparently the result of the repair of DNA gaps induced by the heat treatment of the paraffin embedded tissue sections. This non-specific signal could be eliminated by blocking gap repair with dideoxy-TTP, avoiding heat treatment, or DNase pretreatment. The primer-independent signal was also influenced by the length and mode of fixation and the sample tissue itself. Elimination of the primer-independent signal and the use of viral primers in tissues that did not contain the virus showed that nonspecific DNA synthesis could be eliminated by the hot start modification. Primer oligomerization did not produce a signal during in situ PCR, even when it occurred robustly in the amplifying solution. Generation of the primer-independent signal in solution-phase PCR with purified DNA required a cross-linking fixative, heating, the addition of bovine serum albumin, and intact protein-DNA cross-links.

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