Issue 51, 2016

Stabilisation of self-assembled DNA crystals by triplex-directed photo-cross-linking

Abstract

The tensegrity triangle is a robust DNA motif that can self-assemble to generate macroscopic three-dimensional crystals. However, the stability of these crystals is dependent on the high ionic conditions used for crystal growth. Here we demonstrate that a triplex-forming oligonucleotide can be used to direct the specific intercalation, and subsequent photo-cross-linking, of 4,5′,8-trimethylpsoralen to single or multiple loci within or between the tiles of the crystal. Cross-linking between the tiles of the crystal improves their thermal stability. Such an approach is likely to facilitate the removal of crystals from their mother liquor and may prove useful for applications that require greater crystal stability.

Graphical abstract: Stabilisation of self-assembled DNA crystals by triplex-directed photo-cross-linking

Supplementary files

Article information

Article type
Communication
Submitted
03 May 2016
Accepted
24 May 2016
First published
06 Jun 2016

Chem. Commun., 2016,52, 8014-8017

Stabilisation of self-assembled DNA crystals by triplex-directed photo-cross-linking

H. O. Abdallah, Y. P. Ohayon, A. R. Chandrasekaran, R. Sha, K. R. Fox, T. Brown, D. A. Rusling, C. Mao and N. C. Seeman, Chem. Commun., 2016, 52, 8014 DOI: 10.1039/C6CC03695C

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