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Journal ArticleDOI

FDA-approved drugs selected using virtual screening bind specifically to G-quadruplex DNA.

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TLDR
A virtual screening assay is described to search a database of FDA-approved compounds for compounds with the potential to bind G-quadruplex DNA and found prochloroperazine, promazine, and chlorpromazine stabilized the G- quadruplex structure as determined by fluorescence resonance energy transfer techniques.
Abstract
Guanine-rich sequences found in telomeres and oncogene promoters have the ability to form G-quadruplex structures. In this paper we describe the use of a virtual screening assay to search a database of FDA-approved compounds for compounds with the potential to bind G-quadruplex DNA. More than 750 telomerase inhibitors were identified in a literature search as acting through G-quadruplex stabilization, and from evaluation of these compounds, theoretical models capable of discriminating new compounds that bind Gquadruplex DNA were developed. Six compounds predicted to bind to the G-quadruplex structure were tested for their ability to bind to the human telomeric DNA sequence. Prochloroperazine, promazine, and chlorpromazine stabilized the G-quadruplex structure as determined by fluorescence resonance energy transfer techniques. These compounds also bound to promoter sequences of oncogenes such as c-myc and K-ras. Amitriptyline, imipramine, and loxapine were less stabilizing but did bind to the G-quadruplex. The ability of prochloroperazine, promazine, and chlorpromazine to recognize G-quadruplex structures was confirmed using a fluorescent intercalator displacement assay, in which displacement of thiazole orange from G-quadruplex structures was demonstrated. Interestingly, these compounds exhibited selectivity for the G-quadruplex structure as all had poor affinity for the duplex sequence.

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Small-molecule quadruplex-targeted drug discovery

TL;DR: The major types of quadruplex-binding small molecules that have been designed and studied to date are surveyed and attention is directed to directions where future development of more drug-like compounds is likely to be most productive.
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G-quadruplex structures in the human genome as novel therapeutic targets.

TL;DR: This review will provide some hints on the role of G-quadruplex structures in biological processes and will evaluate their implications as novel therapeutic targets.
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Small Molecule Microarrays Enable the Identification of a Selective, Quadruplex-Binding Inhibitor of MYC Expression.

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Targeting G-quadruplex nucleic acids with heterocyclic alkaloids and their derivatives

TL;DR: In this review, the authors provide a brief, up-to-date summary of heterocyclic alkaloids and their derivatives targeting G-quadruplexes.
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