4.6 Article

Design and synthesis of unsymmetric macrocyclic hexaoxazole compounds with an ability to induce distinct G-quadruplex topologies in telomeric DNA

Journal

ORGANIC & BIOMOLECULAR CHEMISTRY
Volume 14, Issue 22, Pages 5109-5116

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6ob00437g

Keywords

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Funding

  1. JSPS [23310158, 26282214, 21655060]
  2. Mukai Science and Technology Foundation, Tokyo (Japan)
  3. Mochida Memorial Foundation for Medical and Pharmaceutical Research, Tokyo (Japan)
  4. Japan Agency for Medical Research and development (AMED)
  5. Grants-in-Aid for Scientific Research [23310158, 16J08216, 16K13094, 21655060, 16K18908, 26282214] Funding Source: KAKEN

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New macrocyclic hexaoxazole compounds bearing two side chains on an unsymmetrical macrocyclic ring system, i.e., 4,2-L2H2-6OTD (2) and 5,1-L2H2-6OTD (3), were designed as candidate G-quadruplex (G4) ligands and synthesized. These G4 ligands 2 and 3 induced an anti-parallel topology and a hybrid type topology of telomeric DNA, respectively, in contrast to the previously reported symmetrical macro cycle 3,3-L2H2-6OTD (1), which induces a typical anti-parallel structure. Molecular mechanics calculations and docking studies indicate that these differences arise from the different directions of the side chains in these L2H2-6OTD derivatives, and provide an explanation for the weaker stabilization of telomeric DNA by 2 and 3, compared with 1.

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