Brucale Marco, Zuccheri Giampaolo, Rossi Luca, Bazzani Armando, Castellani Gastone, Samorì Bruno
Department of Biochemistry, G. Moruzzi University of Bologna, Via Irnerio, 48, Bologna, Italy 40126.
Org Biomol Chem. 2006 Sep 21;4(18):3427-34. doi: 10.1039/b605744f. Epub 2006 Jun 19.
We present a set of DNA supramolecular architectures based on the polymerization of discrete DNA tiles having the shape of parallelograms and designed to have a one-dimensional inter-tile connectivity. Tiles bind to each other with two connections, which have different thermal stabilities. We discuss how this difference in stability implies that the same monomeric tile can yield supramolecular polymers of different shapes just by changing the polymerization conditions. We show how this system reacts to external stimuli by interconverting between some of its possible states. Concurrently, we show how performing the polymerization on a surface can influence its outcome.
我们展示了一组基于具有平行四边形形状且设计为具有一维瓦片间连接性的离散DNA瓦片聚合的DNA超分子结构。瓦片通过两种具有不同热稳定性的连接相互结合。我们讨论了这种稳定性差异如何意味着相同的单体瓦片仅通过改变聚合条件就能产生不同形状的超分子聚合物。我们展示了该系统如何通过在其一些可能状态之间相互转换来对外界刺激做出反应。同时,我们展示了在表面上进行聚合如何影响其结果。