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使用分子信标通过实时PCR进行半自动克隆验证。

Semiautomated clone verification by real-time PCR using molecular beacons.

作者信息

van Schie R C, Marras S A, Conroy J M, Nowak N J, Catanese J J, de Jong P J

机构信息

Roswell Park Cancer Institute, Buffalo, NY, USA.

出版信息

Biotechniques. 2000 Dec;29(6):1296-300, 1302-4, 1306 passim. doi: 10.2144/00296rr01.

Abstract

Conventional, high-throughput PCR analysis of common elements utilizing numerous primer sets and template DNA requires multiple rounds of PCR to ensure optimal conditions. Laborious gel electrophoresis and staining is then necessary to visualize amplification products. We propose novel multicolor molecular beacons, to establish a high-throughput, PCR-based sequence tagged site (STS) detection system that swiftly and accurately confirms marker content in template containing common repeat elements. A simple, one-tube, real-time PCR assay system was developed to specifically detect regions containing CA and GATA repeats. Ninety-six samples can be confirmed for marker content in a closed-tube format in 3 h, eliminating product confirmation on agarose gels and avoiding crossover contamination. Multiple STSs can be detected simultaneously in the same reaction tube by utilizing molecular beacons labeled with multicolor fluorophores. Template DNA from 260 RPCI-11 bacterial artificial chromosome (BAC) clones was examined for the presence of CA and/or GATA repeats using molecular beacon PCR and compared with conventional PCR results of the same clones. Of the 205 clones containing CA and GATA repeats, we were able to identify 129 clones (CA, n = 99; GATA, n = 30) by using molecular beacons and only 121 clones (CA, n = 92; GATA, n = 29) by conventional PCR amplification. As anticipated, 55 clones that contained sequences other than CA or GATA failed molecular beacon detection. Molecular beacon PCR, employing beacons specific for tandem repeat elements, provides a fast, accurate, and sensitive multiplex detection assay that will expedite verification of marker content in a multitude of template containing these repeats.

摘要

利用众多引物组和模板DNA对常见元件进行传统的高通量PCR分析需要多轮PCR以确保最佳条件。然后需要进行费力的凝胶电泳和染色来观察扩增产物。我们提出了新型多色分子信标,以建立一种基于PCR的高通量序列标签位点(STS)检测系统,该系统能快速准确地确认含有常见重复元件的模板中的标记物含量。开发了一种简单的单管实时PCR检测系统,以特异性检测含有CA和GATA重复序列的区域。96个样品可以在3小时内以封闭管形式确认标记物含量,无需在琼脂糖凝胶上确认产物,避免了交叉污染。通过使用标记有多色荧光团的分子信标,可以在同一反应管中同时检测多个STS。使用分子信标PCR检测了来自260个RPCI-11细菌人工染色体(BAC)克隆的模板DNA中CA和/或GATA重复序列的存在,并与相同克隆的传统PCR结果进行了比较。在205个含有CA和GATA重复序列的克隆中,我们使用分子信标能够鉴定出129个克隆(CA,n = 99;GATA,n = 30),而通过传统PCR扩增仅鉴定出121个克隆(CA,n = 92;GATA,n = 29)。正如预期的那样,55个含有CA或GATA以外序列的克隆未能通过分子信标检测。采用针对串联重复元件的特异性信标的分子信标PCR提供了一种快速、准确和灵敏的多重检测方法,将加快对含有这些重复序列的众多模板中标记物含量的验证。

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