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  4. Cationic red emitting fluorophore: A light up NIR fluorescent probe for G4-DNA
 
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Cationic red emitting fluorophore: A light up NIR fluorescent probe for G4-DNA

Source
Journal of Photochemistry and Photobiology B Biology
ISSN
10111344
Date Issued
2019-01-01
Author(s)
Kumari, Beena
Yadav, Akanksha
Pany, Sushree P.
Pradeepkumar, P. I.
Kanvah, Sriram  
DOI
10.1016/j.jphotobiol.2018.10.007
Volume
190
Abstract
Guanine (G) quadruplexes (G4) are nucleic acid secondary structures formed by G-rich sequences, commonly found in human telomeric and oncogene-promoter regions, have emerged as targets for regulation of multiple biological processes. Considering their importance, targeting the G-quadruplex structure with small molecular binders is extremely pertinent. In this work, red emitting water soluble fluorophores bearing push-pull substituents were synthesized and examined for their interaction with human telomeric G4 and duplex (ds) -DNAs. The presence of a strong electron donating (dimethylamino) and electron withdrawing (cationic pyridinium) groups linked through a conjugated double bond helps in water solubility and enabling the emission in the near IR region (>700–nm). Binding of this cationic dye to the G4-DNA yields multiple-fold emission enhancement (~70 fold with G4-DNA vs. ~7 fold with ds-DNA) along with hypsochromic wavelength shifts (35 nm with G4-DNA and 8 nm with ds-DNA). The remarkable emission changes, ~2–4 fold enhanced binding efficiency noted with the antiparallel conformation of G4-DNA indicates preferential selectivity over ds-DNA. The molecular docking and dynamics studies of the ligands with duplex and G4-DNA were performed, and they provide insights into the mode of binding of these dyes with G4-DNA and supplement the experimental observations.
Unpaywall
URI
http://repository.iitgn.ac.in/handle/IITG2025/22681
Subjects
G4-quadruplexes | NIR fluorescence | Solvatochromism | Styrylpyridinium dyes
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