Literature DB >> 25171773

Novel trisubstituted acridines as human telomeric quadruplex binding ligands.

Jan Ungvarsky1, Jana Plsikova2, Ladislav Janovec1, Jan Koval3, Jaromir Mikes3, Lucia Mikesová3, Denisa Harvanova4, Peter Fedorocko3, Pavol Kristian1, Jana Kasparkova5, Viktor Brabec5, Maria Vojtickova1, Danica Sabolova6, Zuzana Stramova6, Jan Rosocha4, Jan Imrich1, Maria Kozurkova7.   

Abstract

A novel series of trisubstituted acridines were synthesized with the aim of mimicking the effects of BRACO19. These compounds were synthesized by modifying the molecular structure of BRACO19 at positions 3 and 6 with heteroacyclic moieties. All of the derivatives presented in the study exhibited stabilizing effects on the human telomeric DNA quadruplex. UV-vis spectroscopy, circular dichroism, linear dichroism and viscosimetry were used in order to study the nature of the DNA binding in more detail. The results show that all of the novel derivatives were able to fold the single-stranded DNA sequences into antiparallel G-quadruplex structures, with derivative 15 exhibiting the highest stabilizing capability. Cell cycle analysis revealed that a primary trend of the "braco"-like derivatives was to arrest the cells in the S- and G2M-phases of the cell cycle within the first 72h, with derivative 13 and BRACO19 proving particularly effective in suppressing cell proliferation. All studies derivatives were less toxic to human fibroblast cell line in comparison with HT 29 cancer cell line.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Braco 19 derivatives; Cell proliferation; DNA binding; G-quadruplex structures; Trisubstituted acridines

Mesh:

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Year:  2014        PMID: 25171773     DOI: 10.1016/j.bioorg.2014.07.010

Source DB:  PubMed          Journal:  Bioorg Chem        ISSN: 0045-2068            Impact factor:   5.275


  2 in total

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2.  TERRA G-quadruplex RNA interaction with TRF2 GAR domain is required for telomere integrity.

Authors:  Yang Mei; Zhong Deng; Olga Vladimirova; Nitish Gulve; F Brad Johnson; William C Drosopoulos; Carl L Schildkraut; Paul M Lieberman
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  2 in total

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