Faculty of Chemistry, Adam Mickiewicz University, Umultowska 89b, 61-614 Poznan, Poland.
Molecules. 2019 Mar 8;24(5):952. doi: 10.3390/molecules24050952.
The i-motif is a four-stranded DNA structure formed from the cytosine (C)-rich ssDNA sequence, which is stabilized in slightly acidic pH. Additionally, labeling of a cytosine-rich sequence with a fluorescent molecule may constitute a way to construct a pH-sensitive biosensor. In this paper, we report tC-modified fluorescent probes that contain -related sequence C₄GC₄GC₄GC₄A. Results of the UV absorption melting experiments, circular dichroism (CD) spectra, and steady-state fluorescence measurements of tC-modified i-motifs are presented and discussed here. Efficient fluorescence quenching of tC fluorophore occurred upon lowering the pH from 8.0 to 5.5. Furthermore, we present and discuss fluorescence spectra of systems containing tC-modified i-motifs and complementary G-rich sequences in the ratios 1:1, 1:2, and 1:3 in response to pH changes. The fluorescence anisotropy was proposed for the study of conformational switching of the i-motif structure for tC-probes in the presence and absence of a complementary sequence. The possibility of using of the sensor for monitoring pH changes was demonstrated.
发夹型 DNA 是由富含胞嘧啶(C)的单链 DNA 序列形成的四链 DNA 结构,其在略微酸性的 pH 下稳定。此外,用荧光分子标记富含胞嘧啶的序列可能构成构建 pH 敏感生物传感器的一种方式。在本文中,我们报告了包含相关序列 C₄GC₄GC₄GC₄A 的 tC 修饰荧光探针。介绍并讨论了 tC 修饰的发夹型 DNA 的紫外吸收熔融实验、圆二色性(CD)光谱和稳态荧光测量结果。当 pH 值从 8.0 降低到 5.5 时,tC 荧光团的荧光猝灭效率很高。此外,我们还介绍并讨论了在存在和不存在互补 G 富序列的情况下,tC 修饰的发夹型 DNA 与互补 G 富序列的比例为 1:1、1:2 和 1:3 的系统的荧光光谱对 pH 变化的响应。提出了荧光各向异性来研究 tC 探针在存在和不存在互补序列的情况下发夹型 DNA 结构的构象转换。证明了该传感器用于监测 pH 值变化的可能性。