RNA G-quadruplex 与配体的相互作用分析及原位成像应用。

IF 2.6 4区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
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引用次数: 0

摘要

RNA G4作为G4结构的一个重要分支,与常见的DNA G4相比,与配体之间具有不同的相互作用,因此研究RNA G4与配体之间的相互作用可能是提高G4/配体系统生物传感性能的一个新突破。本研究以经典的 PS2.M 序列为模型,比较探讨了 RNA G4 和 DNA G4 与配体海明和硫黄素 T(ThT)相互作用的结构和功能机制。我们发现,虽然RNA G4/hemin系统的催化性能低于DNA G4/hemin,但RNA G4/ThT荧光系统比DNA G4/ThT有显著提高(2∼3倍),腺嘌呤修饰可进一步增强信号转导。此外,通过探索 RNA G4 与 ThT 之间的相互作用,我们认为与 DNA G4/ThT 的单分子结合相比,RNA G4 与 ThT 以双分子模式叠加,从而更有力地限制了 ThT 激发态的结构自旋。此外,与 DNA G4/ThT 相比,RNA G4/ThT 显示出更高的环境耐受性和更低的离子依赖性。最后,我们将 RNA G4/ThT 作为一种高灵敏度的无标记荧光信号输出系统,用于 BCR-ABL e13a2 和 e14a2 同工酶的原位成像。总之,本研究通过系统的 RNA G4/配体相互作用研究,成功筛选出了一种高性能的 RNA G4 生物传感系统,有望为后续的 G4/配体研究提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Interaction analysis of RNA G-quadruplex with ligands and in situ imaging application

Interaction analysis of RNA G-quadruplex with ligands and in situ imaging application

RNA G4, as an integral branch of G4 structure, possesses distinct interactions with ligands compared to the common DNA G4, thus the investigation of RNA G4/ligand interactions might be considered as a fresh breakthrough to improve the biosensing performance of G4/ligand system. In this study, we comparatively explored the structural and functional mechanisms of RNA G4 and DNA G4 in the interaction with ligands, hemin and thioflavin T (ThT), utilizing the classical PS2.M sequence as a model. We found that although the catalytic performance of RNA G4/hemin system was lower than DNA G4/hemin, RNA G4/ThT fluorescence system exhibited a significant improvement (2∼3-fold) compared to DNA G4/ThT, and adenine modification could further enhance the signaling. Further, by exploring the interaction between RNA G4 and ThT, we deemed that RNA G4 and ThT were stacked in a bimolecular mode compared to single-molecule binding of DNA G4/ThT, thus more strongly limiting the structural spin in ThT excited state. Further, RNA G4/ThT displayed higher environmental tolerance and lower ion dependence than DNA G4/ThT. Finally, we employed RNA G4/ThT as a highly sensitive label-free fluorescent signal output system for in situ imaging of isoforms BCR-ABL e13a2 and e14a2. Overall, this study successfully screened a high-performance RNA G4 biosensing system through systematic RNA G4/ligands interaction studies, which was expected to provide a promising reference for subsequent G4/ligand research.

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来源期刊
Analytical biochemistry
Analytical biochemistry 生物-分析化学
CiteScore
5.70
自引率
0.00%
发文量
283
审稿时长
44 days
期刊介绍: The journal''s title Analytical Biochemistry: Methods in the Biological Sciences declares its broad scope: methods for the basic biological sciences that include biochemistry, molecular genetics, cell biology, proteomics, immunology, bioinformatics and wherever the frontiers of research take the field. The emphasis is on methods from the strictly analytical to the more preparative that would include novel approaches to protein purification as well as improvements in cell and organ culture. The actual techniques are equally inclusive ranging from aptamers to zymology. The journal has been particularly active in: -Analytical techniques for biological molecules- Aptamer selection and utilization- Biosensors- Chromatography- Cloning, sequencing and mutagenesis- Electrochemical methods- Electrophoresis- Enzyme characterization methods- Immunological approaches- Mass spectrometry of proteins and nucleic acids- Metabolomics- Nano level techniques- Optical spectroscopy in all its forms. The journal is reluctant to include most drug and strictly clinical studies as there are more suitable publication platforms for these types of papers.
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