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使用连接介导PCR和反向PCR检测DNA双链断裂和染色体易位

Detection of DNA Double-Strand Breaks and Chromosome Translocations Using Ligation-Mediated PCR and Inverse PCR.

作者信息

Singh Sheetal, Shih Shy-Jen, Vaughan Andrew T M

机构信息

Department of Radiation Oncology, University of California at Davis, Sacramento, CA, USA.

出版信息

Methods Mol Biol. 2020;2102:271-288. doi: 10.1007/978-1-0716-0223-2_15.

Abstract

Current techniques for examining the global creation and repair of DNA double-strand breaks are restricted in their sensitivity, and such techniques mask any site-dependent variations in breakage and repair rate or fidelity. We present here a system for analyzing the fate of documented DNA breaks, using the MLL gene as an example, through application of ligation-mediated PCR. Here, a simple asymmetric double-stranded DNA adapter molecule is ligated to experimentally induced DNA breaks and subjected to seminested PCR using adapter and gene-specific primers. The rate of appearance and loss of specific PCR products allow detection of both the break and its repair. Using the additional technique of inverse PCR, the presence of misrepaired products (translocations) can be detected at the same site, providing information on the fidelity of the ligation reaction in intact cells. Such techniques may be adapted for the analysis of DNA breaks and rearrangements introduced into any identifiable genomic location. We have also applied parallel sequencing for the high-throughput analysis of inverse PCR products to facilitate the unbiased recording of all rearrangements located at a specific genomic location.

摘要

目前用于检测DNA双链断裂的整体产生和修复的技术在灵敏度方面存在局限,而且这些技术掩盖了断裂和修复速率或保真度方面任何位点依赖性的差异。我们在此展示一种系统,以MLL基因为例,通过应用连接介导的PCR来分析已记录的DNA断裂的命运。在此,一个简单的不对称双链DNA衔接子分子与实验诱导的DNA断裂连接,并使用衔接子和基因特异性引物进行半巢式PCR。特定PCR产物的出现和消失速率能够检测断裂及其修复情况。使用反向PCR这一附加技术,可以在同一位点检测到错误修复产物(易位)的存在,从而提供完整细胞中连接反应保真度的信息。此类技术可适用于分析引入任何可识别基因组位置的DNA断裂和重排。我们还应用了平行测序对反向PCR产物进行高通量分析,以便于无偏差地记录位于特定基因组位置的所有重排情况。

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