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利用双智能配体对DNA/RNA G-四链体(G4s)进行荧光检测

Fluorescence Detection of DNA/RNA G-Quadruplexes (G4s) by Twice-as-Smart Ligands.

作者信息

Ledvinka Jiri, Rota Sperti Francesco, Paragi Gabor, Pirrotta Marc, Chéron Nicolas, Valverde Ibai E, Menova Petra, Monchaud David

机构信息

Institut de Chimie Moléculaire de l'Université de Bourgogne (ICMUB), CNRS UMR6302, Université Bourgogne Europe (UBE), 9, Av. Alain Savary, 21078, Dijon, FR.

University of Chemistry and Technology, Prague, Technická 5, 16628, Prague 6, CZ.

出版信息

ChemMedChem. 2025 Apr 1;20(7):e202400829. doi: 10.1002/cmdc.202400829. Epub 2025 Jan 15.

Abstract

Fluorescence detection of DNA and RNA G-quadruplexes (G4s) is a very efficient strategy to assess not only the existence and prevalence of cellular G4s but also their relevance as targets for therapeutic interventions. Among the fluorophores used to this end, turn-on probes are the most interesting since their fluorescence is triggered only upon interaction with their G4 targets, which ensures a high sensitivity and selectivity of detection. We reported on a series of twice-as-smart G4 probes, which are both smart G4 ligands (whose structure is reorganized upon interaction with G4s) and smart fluorescent probes (whose fluorescence is turned on upon interaction with G4s). The fine mechanistic details behind the excellent properties of the best prototype N-TASQ remain to be deciphered: to investigate this, we report here on the synthesis and studies of two analogues, N-TASQ and N-TASQ, and on a careful analysis of their G4-interacting properties, investigated both in vitro and in silico. Our results show that fine-tuning their constitutive structural elements allows for increasing the efficiency of both their 'off' (i. e., a conformation with a low fluorescence) and 'on' states (i. e., a conformation with a high fluorescence), which opens interesting ways for the design of more efficient fluorogenic G4 probes.

摘要

DNA和RNA G-四链体(G4s)的荧光检测是一种非常有效的策略,不仅可以评估细胞中G4s的存在和普遍性,还可以评估它们作为治疗干预靶点的相关性。在为此目的使用的荧光团中,开启型探针最具吸引力,因为它们的荧光仅在与G4靶点相互作用时才被触发,这确保了检测的高灵敏度和选择性。我们报道了一系列倍加智能的G4探针,它们既是智能G4配体(其结构在与G4相互作用时会重新组织)又是智能荧光探针(其荧光在与G4相互作用时开启)。最佳原型N-TASQ优异性能背后的精细机制细节仍有待破译:为了对此进行研究,我们在此报告了两种类似物N-TASQ和N-TASQ的合成与研究,以及对它们与G4相互作用特性的仔细分析,这些分析在体外和计算机模拟中均有进行。我们的结果表明,对其组成结构元件进行微调可以提高它们“关闭”状态(即低荧光构象)和“开启”状态(即高荧光构象)的效率,这为设计更高效的荧光G4探针开辟了有趣的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ae/11961149/377b27a07cb0/CMDC-20-e202400829-g004.jpg

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