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利用单分子等离子体增强荧光技术研究配体与 G-四链体 DNA 的结合。

Use of Single-Molecule Plasmon-Enhanced Fluorescence to Investigate Ligand Binding to G-Quadruplex DNA.

机构信息

Discipline of Chemistry, Indian Institute of Technology Gandhinagar, Gandhinagar, Gujarat 382355, India.

Discipline of Biological Engineering, Indian Institute of Technology Gandhinagar, Gandhinagar, Gujarat 382355, India.

出版信息

J Phys Chem Lett. 2023 Jul 13;14(27):6321-6327. doi: 10.1021/acs.jpclett.3c01003. Epub 2023 Jul 6.

Abstract

Single-molecule measurements are crucial for studying the interactions between G-quadruplex (GQ) DNA and ligands, as they provide higher resolution and sensitivity compared to those of bulk measurements. In this study, we employed plasmon-enhanced fluorescence to investigate the real-time interaction between the cationic porphyrin ligand TmPyP4 and different topologies of telomeric GQ DNA at the single-molecule level. By analyzing the time traces of the fluorescence bursts, we extracted dwell times for the ligand. For parallel telomeric GQ DNA, the dwell time distribution followed a biexponential fit, yielding mean dwell times of 5.6 and 18.6 ms. For the antiparallel topology of human telomeric GQ DNA, plasmon-enhanced fluorescence of TmPyP4 was observed, with dwell time distributions following a single-exponential fit and a mean dwell time of 5.9 ms. Our approach allows the nuances of GQ-ligand interactions to be captured and holds promise for studying weakly emitting GQ ligands at the single-molecule level.

摘要

单分子测量对于研究 G-四链体 (GQ) DNA 与配体之间的相互作用至关重要,因为它们比体相测量提供更高的分辨率和灵敏度。在这项研究中,我们采用等离子体增强荧光法在单分子水平上研究了阳离子卟啉配体 TmPyP4 与不同拓扑结构端粒 GQ DNA 之间的实时相互作用。通过分析荧光爆发的时间轨迹,我们提取了配体的停留时间。对于平行的端粒 GQ DNA,停留时间分布符合双指数拟合,得到的平均停留时间为 5.6 和 18.6 ms。对于人端粒 GQ DNA 的反平行结构,观察到 TmPyP4 的等离子体增强荧光,停留时间分布符合单指数拟合,平均停留时间为 5.9 ms。我们的方法可以捕捉 GQ-配体相互作用的细微差别,并有望在单分子水平上研究弱发光 GQ 配体。

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