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Published on: January 17, 2019
Human Telomeric G-Quadruplex Selective Fluoro-Isoquinolines Induce Apoptosis in Cancer Cells
Subhadip Maiti1, Puja Saha1, Tania Das1
1Department of Organic Chemistry , Indian Association for the Cultivation of Science , Jadavpur , Kolkata 700032 , India.
Abstract:
Small molecules that stabilize G-quadruplex structures in telomeres can prevent telomerase enzyme mediated telomere lengthening and subsequently lead to cell death. We herein report two fluoro-isoquinoline derivatives IQ1 and IQ2 as selective ligands for human telomeric G-quadruplex DNA. IQ1 and IQ2 containing different triazolyl side chains have been synthesized by Cu (I) catalyzed azide-alkyne cycloaddition. Fluorescence Resonance Energy Transfer (FRET) melting assay and fluorescence binding titrations indicate that both these ligands exhibit binding preference for telomeric G-quadruplex DNA ( h-TELO) over other promoter DNA quadruplexes and duplex DNA. However, ligand IQ1, containing pyrrolidine side chains, is capable of discriminating among quadruplexes by showing higher affinity toward h-TELO quadruplex DNA. On the contrary, IQ2, containing benzamide side chains, interacts with all the investigated quadruplexes. NMR analysis suggests that IQ1 interacts strongly with the external G-quartets of h-TELO. Biological studies reveal that IQ1 is more potent than IQ2 in inhibiting telomerase activity by selectively interacting with telomeric DNA G-quadruplex. Moreover, a dual luciferase reporter assay indicates that IQ1 is unable to reduce the cellular expression of c-MYC and BCL2 at transcriptional level. Significantly, IQ1 mostly stains the nucleus, induces cell cycle arrest in G0/G1 phase, triggers apoptotic response in cancer cells, and activates caspases 3/7.
Insights
Two novel fluoro-isoquinoline derivatives, IQ1 and IQ2, selectively bind to telomeric G-quadruplex DNA. IQ1 demonstrates superior selectivity and potency in inhibiting telomerase activity, inducing cancer cell apoptosis.
Area of Science:
- Medicinal Chemistry
- Molecular Biology
- Biochemistry
Background:
- Small molecules stabilizing telomeric G-quadruplex structures can inhibit telomerase, leading to cancer cell death.
- Telomerase is a key target in cancer therapy due to its role in telomere maintenance.
Purpose of the Study:
- To synthesize and characterize novel fluoro-isoquinoline derivatives (IQ1 and IQ2) as selective ligands for human telomeric G-quadruplex DNA.
- To evaluate their potential as telomerase inhibitors and anticancer agents.
Main Methods:
- Cu(I) catalyzed azide-alkyne cycloaddition for synthesis.
- Fluorescence Resonance Energy Transfer (FRET) melting assay and fluorescence binding titrations for DNA binding studies.
- Nuclear Magnetic Resonance (NMR) for structural analysis.
- Biological assays including telomerase inhibition, reporter gene assays, cell cycle analysis, and apoptosis assays.
Main Results:
- IQ1 and IQ2 selectively bind to human telomeric G-quadruplex DNA (h-TELO).
- IQ1 exhibits higher affinity and selectivity for h-TELO compared to IQ2.
- IQ1 effectively inhibits telomerase activity and induces apoptosis in cancer cells.
- IQ1 does not affect c-MYC and BCL2 expression at the transcriptional level.
Conclusions:
- IQ1 is a potent and selective telomeric G-quadruplex ligand with anticancer properties.
- IQ1 induces cancer cell death through apoptosis and cell cycle arrest.
- These findings highlight the potential of IQ1 as a therapeutic agent targeting telomerase.
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