Department of Applied Chemistry, Kyushu Institute of Technology, Kitakyushu, 804-8550, Japan.
Anal Sci. 2021 Jan 10;37(1):9-15. doi: 10.2116/analsci.20SAR09. Epub 2020 Oct 30.
G-quardruplex (G4) DNA forms through the gathering together of G-quartet planes formed with four guanine (G) bases. G4 DNA stabilizes with potassium ions (K) by coordination with the G-quartet center. Fluorometric G4 DNA carrying the fluorescence resonance energy transfer (FRET) chromophore pair at both termini has been applied for the fluorometric sensing or imaging of K under a homogeneous aqueous medium. This system has realized non-conventional K selectivity over the sodium ion (Na). The selectivity of the fluorescence G4 was converted to Na from K with a modification of its sequence. On the other hand, G4 DNA detection has been achieved in terms of cancer diagnosis because of a strong relationship of G4 DNA and cancer development. Ligands interacting with G4 are expected to have anti-cancer potential. In addition, fluorometric G4 ligands have been developed and tested as tools for the dynamic monitoring of G4 in living cells. Moreover, fluorometric G4 DNA has been utilized to evaluate the G4 ligand performance.
G-四链体(G4)DNA 通过四个鸟嘌呤(G)碱基形成的 G-四联体平面的聚集而形成。G4 DNA 通过与 G-四联体中心的配位与钾离子(K)稳定。带有荧光共振能量转移(FRET)生色团对的荧光 G4 DNA 已应用于均相水介质中 K 的荧光传感或成像。该系统实现了非传统的 K 对钠离子(Na)的选择性。通过改变其序列,将荧光 G4 的选择性从 K 转换为 Na。另一方面,由于 G4 DNA 与癌症发展之间存在很强的关系,因此 G4 DNA 的检测已应用于癌症诊断。与 G4 相互作用的配体有望具有抗癌潜力。此外,荧光 G4 配体已被开发并用作活细胞中 G4 动态监测的工具。此外,荧光 G4 DNA 已用于评估 G4 配体的性能。