Switchable reconfiguration of an interlocked DNA olympiadane nanostructure

Chun Hua Lu, Xiu Juan Qi, Alessandro Cecconello, Stefan Sven Jester, Michael Famulok, Itamar Willner

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

Interlocked DNA rings (catenanes) are interesting reconfigurable nanostructures. The synthesis of catenanes with more than two rings is, however, hampered, owing to low yields of these systems. We report a new method for the synthesis of catenanes with a controlled number of rings in satisfactory yields. Our approach is exemplified by the synthesis of a five-ring DNA catenane that exists in four different configurations. By the use of nucleic acids as "fuels" and "antifuels", the cyclic reconfiguration of the system across four states is demonstrated. One of the states, olympiadane, corresponds to the symbol of the Olympic Games. The five-ring catenane was implemented as a mechanical scaffold for the reconfiguration of Au NPs. The advantages of DNA catenanes over supramolecular catenanes include the possibility of generating highly populated defined states and the feasibility of tethering nanoobjects to the catenanes, which act as a mechanical scaffold to reconfigure the nanoobjects.

Original languageEnglish
Pages (from-to)7499-7503
Number of pages5
JournalAngewandte Chemie - International Edition
Volume53
Issue number29
DOIs
StatePublished - 14 Jul 2014

Keywords

  • DNA catenanes
  • molecular devices
  • nanoparticles
  • strand displacement
  • switches

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