Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, P. R. China.
College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.
ACS Sens. 2022 Oct 28;7(10):2833-2856. doi: 10.1021/acssensors.2c00992. Epub 2022 Sep 16.
The G-quadruplex structure is crucial in several biological processes, including DNA replication, transcription, and genomic maintenance. G-quadruplex-based fluorescent probes have recently gained popularity because of their ease of use, low cost, excellent selectivity, and sensitivity. This review summarizes the latest applications of G-quadruplex structures as detectors of genome-wide, enantioselective catalysts, disease therapeutics, promising drug targets, and smart fluorescence probes. In every section, sensing of G-quadruplex and employing G4 for the detection of other analytes were introduced, respectively. Since the discovery of the G-quadruplex structure, several studies have been conducted to investigate its conformations, biological potential, stability, reactivity, selectivity for chemical modification, and optical properties. The formation mechanism and advancements for detecting different metal ions (Na, K, Ag, Tl, Cu/Cu, Hg, and Pb) and biomolecules (AMP, ATP, DNA/RNA, microRNA, thrombin, T4 PNK, RNase H, ALP, CEA, lipocalin 1, and UDG) using fluorescent sensors based on G-quadruplex modification, such as dye labels, artificial nucleobase moieties, dye complexes, intercalating dyes, and bioconjugated nanomaterials (AgNCs, GO, QDs, CDs, and MOF) is described herein. To investigate these extremely efficient responsive agents for diagnostic and therapeutic applications in medicine, fluorescence sensors based on G-quadruplexes have also been employed as a quantitative visualization technique.
G-四链体结构在包括 DNA 复制、转录和基因组维持在内的几个生物过程中至关重要。基于 G-四链体的荧光探针由于其使用方便、成本低、选择性好、灵敏度高等优点,最近受到了广泛关注。本综述总结了 G-四链体结构作为全基因组、对映选择性催化剂、疾病治疗剂、有前途的药物靶点和智能荧光探针的最新应用。在每个部分中,分别介绍了 G-四链体的传感和 G4 用于检测其他分析物的应用。自 G-四链体结构被发现以来,已经进行了多项研究来研究其构象、生物潜力、稳定性、反应性、化学修饰的选择性和光学性质。本文描述了使用基于 G-四链体修饰的荧光传感器(如染料标记物、人工核苷基部分、染料复合物、嵌入染料和生物共轭纳米材料(AgNCs、GO、QDs、CDs 和 MOF)检测不同金属离子(Na、K、Ag、Tl、Cu/Cu、Hg 和 Pb)和生物分子(AMP、ATP、DNA/RNA、miRNA、凝血酶、T4 PNK、RNase H、ALP、CEA、lipocalin 1 和 UDG)的形成机制和进展。为了研究这些在医学诊断和治疗应用中非常有效的响应性试剂,基于 G-四链体的荧光传感器也被用作定量可视化技术。