Literature DB >> 24405563

Molecular rotor-based fluorescent probe for selective recognition of hybrid G-quadruplex and as a K+ sensor.

Lingling Liu1, Yong Shao, Jian Peng, Chaobiao Huang, Hua Liu, Lihua Zhang.   

Abstract

This work demonstrates the significant fluorescence enhancement of thioflavin T (ThT) when binding to G-quadruplexes possessing hybrid structures by using UV-vis absorption spectra, fluorescence spectra, and Tm experiments to confirm the binding events. ThT binding does not disturb native G-quadruplex structures preformed in Na(+) and K(+) solutions. The fluorescence enhancement is caused by the rotation restriction of benzothiazole (BZT) and dimethylaminobenzene (DMAB) rings in the ThT excited state upon its G-quadruplex binding. This molecular rotor mechanism as a means of fluorescence enhancement is confirmed using a nonrotor analogue of ThT. Hydroxylation and electrolyte experiments demonstrate that ThT stacks on the tetrad of the hybrid G-quadruplexes, whereas electrostatic forces contribute more to ThT binding for other G-quadruplex structures. By stacking on the tetrad, the ThT binding favors selective identification of DNA hybrid G-quadruplex structures with enhanced fluorescence and can serve as a conformation probe to monitor G-quadruplex structure conversion between hybrid and other structures. Using these properties, we developed a selective and label-free fluorescent K(+) sensor with a detection limit of 1 mM for K(+) in the presence of 100 mM Na(+). The coexistence of other metal ions produces a fluorescence response comparable to K(+) alone. We believe that ThT can potentially provide structure identification of hybrid G-quadruplexes and aid in the construction of G-quadruplex-based sensors.

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Year:  2014        PMID: 24405563     DOI: 10.1021/ac403326m

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  9 in total

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7.  Selective lighting up of epiberberine alkaloid fluorescence by fluorophore-switching aptamer and stoichiometric targeting of human telomeric DNA G-quadruplex multimer.

Authors:  Lihua Zhang; Hua Liu; Yong Shao; Clement Lin; Huan Jia; Gang Chen; Danzhou Yang; Ying Wang
Journal:  Anal Chem       Date:  2014-12-09       Impact factor: 6.986

8.  Thioflavin T as an efficient fluorescence sensor for selective recognition of RNA G-quadruplexes.

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9.  Thioflavin T binds dimeric parallel-stranded GA-containing non-G-quadruplex DNAs: a general approach to lighting up double-stranded scaffolds.

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  9 in total

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