4.7 Article

G-quadruplex binding affinity variation on molecular encapsulation of ligands by porphyrin-tethered cyclodextrin

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JOURNAL OF MOLECULAR LIQUIDS
卷 373, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.molliq.2023.121233

关键词

G-quadruplex; Porphyrin; β -cyclodextrin; DNA binding; Fluorescence

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Non-canonical nucleic acid forms, such as G-quadruplexes, play a significant role in biological processes and have been targeted for cancer therapy. This article presents the synthesis and characterization of benzimidazole derivatives and their binding interactions with G-quadruplex and double-stranded DNAs.
Non-canonical nuclei acid forms exist in the genome and are widely involved in the control of biological processes. Guanine-rich nucleic acid sequences can form non-canonical DNA forms known as G-quadruplexes. They have become molecular targets in cancer therapy. The structural differences of DNA-binding molecules lead to the alteration of binding affinities for G-quadruplexes. In this article, we present the synthesis and characterization of a series of benzimidazole derivatives. In addition, inclu-sion complexes of the compounds are made with a porphyrin-b-CD derivative. 2D ROESY spectra provide evidence of the structure of the inclusion complexes. The binding interaction of the benzimidazoles and the inclusion complexes with double-stranded and three G-quadruplex DNAs are studied employing spectroscopic techniques. An order 106-107 M-1 is observed as binding strengths in particular cases. The G-quadruplex selectivity is discussed based on the binding constants. The bromo-substituted com-pound shows a greater affinity for G-quadruplexes over the duplex DNA, showing a high G-quadruplex selectivity. It indicates the structural dependence of the ligand on the strength of binding to quadruplex DNAs. Further, circular dichroism is utilized to extend insight into the interaction of the strong-binding compound with the duplex and G-quadruplex DNAs.(c) 2023 Elsevier B.V. All rights reserved.

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