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LORD-Q: a long-run real-time PCR-based DNA-damage quantification method for nuclear and mitochondrial genome analysis

机译:LORD-Q:长期基于PCR的实时DNA损伤定量方法用于核和线粒体基因组分析

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摘要

DNA damage is tightly associated with various biological and pathological processes, such as aging and tumorigenesis. Although detection of DNA damage is attracting increasing attention, only a limited number of methods are available to quantify DNA lesions, and these techniques are tedious or only detect global DNA damage. In this study, we present a high-sensitivity long-run real-time PCR technique for DNA-damage quantification (LORD-Q) in both the mitochondrial and nuclear genome. While most conventional methods are of low-sensitivity or restricted to abundant mitochondrial DNA samples, we established a protocol that enables the accurate sequence-specific quantification of DNA damage in >3-kb probes for any mitochondrial or nuclear DNA sequence. In order to validate the sensitivity of this method, we compared LORD-Q with a previously published qPCR-based method and the standard single-cell gel electrophoresis assay, demonstrating a superior performance of LORD-Q. Exemplarily, we monitored induction of DNA damage and repair processes in human induced pluripotent stem cells and isogenic fibroblasts. Our results suggest that LORD-Q provides a sequence-specific and precise method to quantify DNA damage, thereby allowing the high-throughput assessment of DNA repair, genotoxicity screening and various other processes for a wide range of life science applications.
机译:DNA损伤与各种生物学和病理过程密切相关,例如衰老和肿瘤发生。尽管DNA损伤的检测越来越引起人们的注意,但是只有有限的几种方法可以量化DNA损伤,而且这些技术很繁琐,或者只能检测总体DNA损伤。在这项研究中,我们为线粒体和核基因组中的DNA损伤定量(LORD-Q)提供了一种高灵敏度的长期实时PCR技术。尽管大多数常规方法灵敏度低或仅限于丰富的线粒体DNA样品,但我们建立了一种协议,该协议能够对任何线粒体或核DNA序列的> 3-kb探针进行DNA损伤的精确序列特异性定量。为了验证该方法的灵敏度,我们将LORD-Q与先前发布的基于qPCR的方法和标准的单细胞凝胶电泳分析进行了比较,证明了LORD-Q的卓越性能。示例性地,我们监测了人类诱导的多能干细胞和同基因成纤维细胞中DNA损伤的诱导和修复过程。我们的结果表明,LORD-Q提供了一种序列特异性和精确的方法来量化DNA损伤,从而可以对各种生命科学应用进行DNA修复,遗传毒性筛选和其他各种过程的高通量评估。

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