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.

Bioconjugate Chemistry
|February 14, 2018
PubMed

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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