4.7 Article

Isaindigotone Derivatives: A New Class of Highly Selective Ligands for Telomeric G-Quadruplex DNA

Journal

JOURNAL OF MEDICINAL CHEMISTRY
Volume 52, Issue 9, Pages 2825-2835

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jm801600m

Keywords

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Funding

  1. National Nature Science Foundation of China [20772159, 90813011, U0832005]
  2. NSFC/RGC [30731160006, N_PolyU 508/06]
  3. Science Foundation of Guangzhou [200622-E402]
  4. University Grants Committee Areas of Excellence Scheme in Hong Kong [AoE P/10-01]

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Four isaindigotone derivatives (5a,b and 6a,b) designed as telomeric G-quadruplex ligands have been synthesized and characterized. The unfused aromatic rings in these compounds allow a flexible and adaptive conformation in G-quadruplex recognition. The interaction of human telomeric G-quadruplex DNA with these designed ligands was explored by means of FRET melting, fluorescence titration, CD spectroscopy, continuous variation; and molecular modeling studies. Our results showed that the adaptive scaffold might not only allow the ligands to well occupy the G-quartet but also perfectly bind to the grooves of the G-quadruplex. The synergetic effect of the multiple binding modes might be responsible for the improved binding ability and high selectivity of these ligands toward G-quadruplex over duplex DNA. Long-term exposure of HL60 and CA46 cancer cells to compound 5a showed a remarkable decrease in population growth, cellular senescence phenotype, and shortening of the telomere length, which is consistent with the behavior of an effective telomeric G-quadruplex ligand and telomerase inhibitor.

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