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Recognition of G-quadruplex DNA by triangular star-shaped compounds: With or without side chains?

  • Hélène Bertrand
  • , Anton Granzhan
  • , David Monchaud
  • , Nicolas Saettel
  • , Régis Guillot
  • , Sarah Clifford
  • , Aurore Guédin
  • , Jean Louis Mergny
  • , Marie Paule Teulade-Fichou
  • Centre national de la recherche scientifique
  • UBFC
  • Institut de Chimie Moléculaire et des Matériaux d'Orsay
  • University of Geneva
  • CNRS/Museum National d'Histoire Naturelle/IRD/UPMC
  • Univ. Bordeaux

Research output: Contribution to journalArticlepeer-review

Abstract

We report the synthesis of two new series of triangular aromatic platforms, either with three aminoalkyl side chains (triazatrinaphthylene series, TrisK: six compounds), or without side chains (triazoniatrinaphthylene, TrisQ). The quadruplex-DNA binding behavior of the two series, which differ essentially by the localization of the cationic charges, was evaluated by means of FRET-melting and G4-FID assays. For the trisubstituted triazatrinaphthylenes (TrisK), the length of the substituents and the presence of terminal hydrogen-bond-donor groups (NH2) were shown to be crucial for ensuring a high quadruplex affinity (ΔT1/2 values of up to 20°C at 1 μM for the best candidate, TrisK3-NH) and selectivity versus duplex DNA. Subsequently, comparison of data collected on both the telomeric- and c-myc-quadruplex showed that the nonsubstituted TrisQ is even more efficient than TrisK3-NH, both in terms of quadruplex affinity (ΔT1/2=26°C in K+ buffer) and selectivity versus duplex DNA. Structural considerations conducted with the c-myc quadruplex indicate that both TrisK3-NH and TrisQ stack well onto the G-quartet but in an offset position, which might be influenced by the formation of multiple hydrogen bonds with the target in the former case. Finally, the nonsubstituted TrisQ displays a binding profile very similar to some of the best quadruplex binders, BRACO-19 and bisquinolinium 360A, used herein as references, and thereby represents a highly promising novel molecular design for quadruplex recognition.

Original languageEnglish
Pages (from-to)4529-4539
Number of pages11
JournalChemistry - A European Journal
Volume17
Issue number16
DOIs
Publication statusPublished - 11 Apr 2011
Externally publishedYes

Keywords

  • DNA recognition
  • G-quadruplexes
  • heterocycles
  • ligand design
  • polycycles

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