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通过定量 PCR 停止测定鉴定 S. pombe 基因组中的推定 G-四链体 DNA 结构。

Identification of putative G-quadruplex DNA structures in S. pombe genome by quantitative PCR stop assay.

机构信息

Department of Medical Biochemistry and Biophysics, Umeå University, Umeå, Sweden.

Department of Chemistry, Umeå University, Umeå, Sweden.

出版信息

DNA Repair (Amst). 2019 Oct;82:102678. doi: 10.1016/j.dnarep.2019.102678. Epub 2019 Aug 20.

Abstract

In order to understand in which biological processes the four-stranded G-quadruplex (G4) DNA structures play a role, it is important to determine which predicted regions can actually adopt a G4 structure. Here, to identify DNA regions in Schizosaccharomyces pombe that fold into G4 structures, we first optimized a quantitative PCR (qPCR) assay using the G4 stabilizer, PhenDC3. We call this method the qPCR stop assay, and used it to screen for G4 structures in genomic DNA. The presence of G4 stabilizers inhibited DNA amplification in 14/15 unexplored genomic regions in S. pombe that encompassed predicted G4 structures, suggesting that at these sites the stabilized G4 structure formed an obstacle for the DNA polymerase. Furthermore, the formation of G4 structures was confirmed by complementary in vitro assays. In vivo, the S. pombe G4 unwinder Pif1 helicase, Pfh1, was associated with tested G4 sites, suggesting that the G4 structures also formed in vivo. Thus, we propose that the confirmed G4 structures in S. pombe form an obstacle for replication in vivo, and that the qPCR stop assay is a method that can be used to identify G4 structures. Finally, we suggest that the qPCR stop assay can also be used for identifying G4 structures in other organisms, as well as being adapted to screen for novel G4 stabilizers.

摘要

为了了解四链体 G- 四链螺旋(G4)DNA 结构在哪些生物过程中发挥作用,确定哪些预测区域实际上可以形成 G4 结构非常重要。在这里,为了确定裂殖酵母中折叠成 G4 结构的 DNA 区域,我们首先使用 G4 稳定剂 PhenDC3 优化了定量 PCR(qPCR)测定法。我们将这种方法称为 qPCR 停止测定法,并将其用于筛选基因组 DNA 中的 G4 结构。G4 稳定剂的存在抑制了 15 个未探索的裂殖酵母基因组区域中 14 个包含预测 G4 结构的区域的 DNA 扩增,这表明在这些位点,稳定的 G4 结构形成了 DNA 聚合酶的障碍。此外,体外互补实验证实了 G4 结构的形成。在体内,裂殖酵母 G4 解旋酶 Pif1 螺旋酶 Pfh1 与测试的 G4 位点相关,这表明 G4 结构也在体内形成。因此,我们提出在裂殖酵母中确认的 G4 结构在体内复制中形成障碍,并且 qPCR 停止测定法是一种可以用来识别 G4 结构的方法。最后,我们建议 qPCR 停止测定法也可以用于鉴定其他生物体中的 G4 结构,并适应筛选新的 G4 稳定剂。

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