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i-DNA 的热稳定性和 pH 稳定性:用模型和细胞内 NMR 数据进行体外实验比较。

Thermal and pH Stabilities of i-DNA: Confronting in vitro Experiments with Models and In-Cell NMR Data.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry & Chemical Engineering, Nanjing University, Nanjing, 210023, China.

ARNA Laboratory, Université de Bordeaux, INSERM U 1212, CNRS UMR5320, IECB, 33607, Pessac, France.

出版信息

Angew Chem Int Ed Engl. 2021 Apr 26;60(18):10286-10294. doi: 10.1002/anie.202016801. Epub 2021 Mar 24.

Abstract

Recent studies indicate that i-DNA, a four-stranded cytosine-rich DNA also known as the i-motif, is actually formed in vivo; however, a systematic study on sequence effects on stability has been missing. Herein, an unprecedented number of different sequences (271) bearing four runs of 3-6 cytosines with different spacer lengths has been tested. While i-DNA stability is nearly independent on total spacer length, the central spacer plays a special role on stability. Stability also depends on the length of the C-tracts at both acidic and neutral pHs. This study provides a global picture on i-DNA stability thanks to the large size of the introduced data set; it reveals unexpected features and allows to conclude that determinants of i-DNA stability do not mirror those of G-quadruplexes. Our results illustrate the structural roles of loops and C-tracts on i-DNA stability, confirm its formation in cells, and allow establishing rules to predict its stability.

摘要

最近的研究表明,i-DNA(一种四链富含胞嘧啶的 DNA,也称为 i 型发夹)实际上是在体内形成的;然而,关于序列对稳定性影响的系统研究还尚未进行。在此,我们测试了数量空前的(271 个)不同序列,这些序列均带有 3-6 个胞嘧啶的四个串联,且具有不同的间隔长度。虽然 i-DNA 的稳定性几乎与总间隔长度无关,但中心间隔在稳定性上起着特殊的作用。稳定性还取决于在酸性和中性 pH 值下 C 链的长度。由于引入的数据集规模庞大,本研究提供了关于 i-DNA 稳定性的全面图景;它揭示了意想不到的特征,并可以得出结论,i-DNA 稳定性的决定因素并不反映 G-四链体的决定因素。我们的研究结果说明了环和 C 链在 i-DNA 稳定性中的结构作用,证实了其在细胞中的形成,并允许建立规则来预测其稳定性。

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