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Construction of a self-directed replication system for label-free and real-time sensing of repair glycosylases with zero background

机译:用于自定向复制系统,用于无标记和实时感测修复糖基酶与零背景

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Genomic DNA damage and repair are involved in multiple fundamental biological processes, including metabolism, disease, and aging. Inspired by the natural repair mechanism in vivo , we demonstrate for the first time the construction of a self-directed replication system for label-free and real-time sensing of repair glycosylases with zero background. The presence of DNA glycosylase can catalyze the excision repair of the damaged base, successively autostarting the self-directed replication through recycling polymerization extension and strand-displacement DNA synthesis for the generation of exponentially amplified dsDNAs. The resultant dsDNA products can be label-free and real-time monitored with SYBR Green I as the fluorescent indicator. Owing to the high efficiency of self-directed exponential replication and the absolute zero background resulting from the efficient inhibition of nonspecific amplification induced by multiple primer-dependent amplification, this strategy exhibits high sensitivity with a detection limit of 1 × 10 ~(?8) U μL ~(?1) in vitro and 1 cell in vivo , and it can be further used to screen inhibitors, quantify DNA glycosylase from diverse cancer cells, and even monitor various repair enzymes by simply changing the specific damaged base in the DNA template. Importantly, this assay can be performed in a label-free, real-time and isothermal manner with the involvement of only a single type of polymerase, providing a simple, robust and universal platform for repair enzyme-related biomedical research and clinical therapeutics.
机译:基因组DNA损伤和修复涉及多种基本生物过程,包括代谢,疾病和老化。受到体内自然修复机制的启发,我们首次证明了一个自我指导复制系统的构建,用于无标记和实时感测修复糖基酶的零背景。 DNA糖基酶的存在可以促进受损基础的切除修复,连续通过再循环聚合延伸和链 - 位移DNA合成来促进自我导向的复制,用于产生指数扩增的DSDNA。所得DSDNA产品可以是无标记的,并且使用Sybr Green I作为荧光指示器进行标记和实时监测。由于自定向指数复制的高效率和由多特异性扩增诱导的非特异性扩增产生的绝对零背景,该策略表现出高灵敏度,检测限为1×10〜(?8)体内μl〜(α1)在体内体外和1个细胞,并且可以进一步用于筛选抑制剂,量化来自不同癌细胞的DNA糖基酶,甚至通过简单地改变DNA模板中的特定受损碱来监测各种修复酶。重要的是,该测定可以以仅具有单一类别的聚合酶的无标记,实时和等温的方式进行,为修复酶相关生物医学研究和临床治疗提供简单,坚固且通用的平台。

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