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A Simple Rapid and Quantitative Assay to Measure Repair of DNA-protein Crosslinks on Plasmids Transfected into Mammalian Cells

机译:一种简单快速定量的方法来测量转染哺乳动物细胞的质粒上DNA-蛋白质交联的修复

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摘要

The purpose of this method is to provide a flexible, rapid, and quantitative technique to examine the kinetics of DNA-protein crosslink (DPC) repair in mammalian cell lines. Rather than globally assaying removal of xenobiotic-induced or spontaneous chromosomal DPC removal, this assay examines the repair of a homogeneous, chemically defined lesion specifically introduced at one site within a plasmid DNA substrate. Importantly, this approach avoids the use of radioactive materials and is not dependent on expensive or highly-specialized technology. Instead, it relies on standard recombinant DNA procedures and widely available real-time, quantitative polymerase chain reaction (qPCR) instrumentation. Given the inherent flexibility of the strategy utilized, the size of the crosslinked protein, as well as the nature of the chemical linkage and the precise DNA sequence context of the attachment site can be varied to address the respective contributions of these parameters to the overall efficiency of DPC repair. Using this method, plasmids containing a site-specific DPC were transfected into cells and low molecular weight DNA recovered at various times post-transfection. Recovered DNA is then subjected to strand-specific primer extension (SSPE) using a primer complementary to the damaged strand of the plasmid. Since the DPC lesion blocks Taq DNA polymerase, the ratio of repaired to un-repaired DNA can be quantitatively assessed using qPCR. Cycle threshold (CT) values are used to calculate percent repair at various time points in the respective cell lines. This SSPE-qPCR method can also be used to quantitatively assess the repair kinetics of any DNA adduct that blocks Taq polymerase.
机译:此方法的目的是提供一种灵活,快速和定量的技术,以检查哺乳动物细胞系中DNA-蛋白质交联(DPC)修复的动力学。该检测方法不是全面检测异种生物诱导的或自发的染色体DPC去除的去除,而是检测在质粒DNA底物内一个位点上特异性引入的均质,化学确定的病变的修复。重要的是,这种方法避免了使用放射性物质,并且不依赖于昂贵或高度专业化的技术。相反,它依赖于标准的重组DNA程序和广泛使用的实时定量聚合酶链反应(qPCR)仪器。考虑到所使用策略的固有灵活性,可以改变交联蛋白的大小,化学键连接的性质以及附着位点的精确DNA序列背景,以解决这些参数对总体效率的各自贡献。 DPC维修。使用这种方法,将含有位点特异性DPC的质粒转染到细胞中,并在转染后的不同时间回收低分子量DNA。然后,使用与质粒受损链互补的引物对回收的DNA进行链特异性引物延伸(SSPE)。由于DPC病变会阻断Taq DNA聚合酶,因此可以使用qPCR定量评估修复DNA与未修复DNA的比例。循环阈值(CT)值用于计算各个细胞系中各个时间点的修复百分比。这种SSPE-qPCR方法还可用于定量评估任何阻断Taq聚合酶的DNA加合物的修复动力学。

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