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pH 诱导的 i- -motif DNA 分子内折叠动力学。

pH-induced intramolecular folding dynamics of i-motif DNA.

机构信息

The Institute of Scientific and Industrial (SANKEN), Osaka University, Mihogaoka 8-1, Ibaraki, Osaka 567-0047 Japan.

出版信息

J Am Chem Soc. 2011 Oct 12;133(40):16146-53. doi: 10.1021/ja2061984. Epub 2011 Sep 15.

Abstract

Using the combination of fluorescence resonance energy transfer (FRET) and fluorescence correlation spectroscopy (FCS) technique, we investigate the mechanism and dynamics of the pH-induced conformational change of i-motif DNA in the bulk phases and at the single-molecule level. Despite numerous studies on i-motif that is formed from cytosine (C)-rich strand at slightly acidic pH, its detailed conformational dynamics have been rarely reported. Using the FRET technique to provide valuable information on the structure of biomolecules such as a protein and DNA, we clearly show that the partially folded species as well as the single-stranded structure coexist at neutral pH, supporting that the partially folded species may exist substantially in vivo and play an important role in a process of gene expression. By measuring the FCS curves of i-motif, we observed the gradual decrease of the diffusion coefficient of i-motif with increasing pH. The quantitative analysis of FCS curves supports that the gradual decrease of diffusion coefficient (D) associated with the conformational change of i-motif is not only due to the change in the intermolecular interaction between i-motif and solvent accompanied by the increase of pH but also due to the change of the shape of DNA. Furthermore, FCS analysis showed that the intrachain contact formation and dissociation for i-motif are 5-10 times faster than that for the open form. The fast dynamics of i-motif with a compact tetraplex is due to the intrinsic conformational changes at the fluorescent site including the motion of alkyl chain connecting the dye to DNA, whereas the slow intrachain contact formation observed from the open form is due to the DNA motion corresponding to an early stage interaction in the folding process of the unstructured open form.

摘要

利用荧光共振能量转移(FRET)和荧光相关光谱(FCS)技术的组合,我们在体相和单分子水平上研究了 pH 诱导 i-motif DNA 构象变化的机制和动力学。尽管已有大量研究表明,富含胞嘧啶(C)的链在略酸性 pH 下形成 i-motif,但对其详细的构象动力学却鲜有报道。通过 FRET 技术为蛋白质和 DNA 等生物分子的结构提供有价值的信息,我们清楚地表明,部分折叠的物种以及单链结构在中性 pH 下共存,这支持了部分折叠的物种可能在体内大量存在,并在基因表达过程中发挥重要作用。通过测量 i-motif 的 FCS 曲线,我们观察到随着 pH 值的增加,i-motif 的扩散系数逐渐减小。FCS 曲线的定量分析支持了这样一种观点,即与 i-motif 构象变化相关的扩散系数(D)的逐渐减小不仅是由于 i-motif 与溶剂之间的分子间相互作用随 pH 值的增加而改变,而且还由于 DNA 形状的改变。此外,FCS 分析表明,i-motif 中链内接触的形成和解离速度比开链形式快 5-10 倍。紧凑四聚体 i-motif 的快速动力学是由于荧光基团连接染料和 DNA 的烷基链的运动等荧光基团的固有构象变化所致,而从开链形式观察到的缓慢的链内接触形成则是由于 DNA 运动,这对应于无结构开链形式折叠过程中的早期相互作用。

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