pH-Stimulated Reconfiguration and Structural Isomerization of Origami Dimer and Trimer Systems.

Wu, Na; Willner, Itamar · Nano Lett · 2016

basic_science · Level V

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Abstract

Reversible pH-responsive dimer or trimer origami structures are assembled by bridging origami frames with pH-responsive units. The cyclic pH-stimulated separation and reassembly of dimer origami structures is demonstrated using i-motif or Hoogsteen-type (C-G·C<sup>+</sup> or T-A·T) interactions. The duplex-bridged dimer T<sub>1</sub>-T<sub>2</sub> is separated by the pH-induced formation of an i-motif structure (pH = 4.5), and the dimer is reassembled at pH = 7.0. The duplex-bridged dimer, T<sub>3</sub>-T<sub>4</sub>, is separated at pH = 4.5 through the formation of C-G·C<sup>+</sup> triplex structures and is reassembled to the dimer at pH = 7.0. Similarly, the T-A·T triplex-bridged dimer, T<sub>5</sub>-T<sub>6</sub>, is separated at pH = 9.5 and is reassembled at neutral pH. Finally, a trimer, T<sub>3</sub>-T<sub>7</sub>-T<sub>6</sub>, that includes C-G·C<sup>+</sup> and T-A·T pH-responsive bridges reveals pH-programmed cleavage to selectively yield the dimers T<sub>3</sub>-T<sub>7</sub> or T<sub>7</sub>-T<sub>6</sub>, which reassemble to the trimer at pH = 7.0. A linear three-frame origami structure bridged by duplexes including caged i-motif units undergoes pH-stimulated isomerization to a bent structure (pH = 4.5) through the formation of i-motif complex and bridging T-A·T triplex units.