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首页> 外文期刊>Nucleic Acids Research >A hybrid G-quadruplex structure formed between RNA and DNA explains the extraordinary stability of the mitochondrial R-loop
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A hybrid G-quadruplex structure formed between RNA and DNA explains the extraordinary stability of the mitochondrial R-loop

机译:RNA和DNA之间形成的杂化G-四链体结构解释了线粒体R环的非凡稳定性

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In human mitochondria the transcription machinery generates the RNA primers needed for initiation of DNA replication. A critical feature of the leading-strand origin of mitochondrial DNA replication is a CG-rich element denoted conserved sequence block II (CSB II). During transcription of CSB II, a G-quadruplex structure forms in the nascent RNA, which stimulates transcription termination and primer formation. Previous studies have shown that the newly synthesized primers form a stable and persistent RNA–DNA hybrid, a R-loop, near the leading-strand origin of DNA replication. We here demonstrate that the unusual behavior of the RNA primer is explained by the formation of a stable G-quadruplex structure, involving the CSB II region in both the nascent RNA and the non-template DNA strand. Based on our data, we suggest that G-quadruplex formation between nascent RNA and the non-template DNA strand may be a regulated event, which decides the fate of RNA primers and ultimately the rate of initiation of DNA synthesis in human mitochondria.
机译:在人类线粒体中,转录机制产生启动DNA复制所需的RNA引物。线粒体DNA复制的前导链起源的关键特征是富含CG的元件,称为保守序列区II(CSB II)。在CSB II转录过程中,新生RNA中会形成G-四链体结构,从而刺激转录终止和引物形成。先前的研究表明,新合成的引物在DNA复制的前导链起点附近形成稳定且持久的RNA-DNA杂合体,即R环。我们在这里证明了RNA引物的异常行为是由稳定的G-四链体结构的形成所解释的,该结构涉及新生RNA和非模板DNA链中的CSB II区。根据我们的数据,我们认为新生的RNA与非模板DNA链之间的G-四链体形成可能是受调控的事件,它决定了RNA引物的命运,并最终决定了人类线粒体中DNA合成的起始速率。

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