Davis Jeffery T, Spada Gian Piero
Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, USA.
Chem Soc Rev. 2007 Feb;36(2):296-313. doi: 10.1039/b600282j. Epub 2006 Nov 7.
Nature's use of a simple genetic code to enable life's complex functions is an inspiration for supramolecular chemistry. DNA nucleobases carry the key information utilizing a variety of cooperative and non-covalent interactions such as hydrophobic, van der Waals, pi-pi stacking, ion-dipole and hydrogen bonding. This tutorial review describes some recent advances in the form and function provided by self-assembly of guanine (G) based systems. We attempt to make connections between the structures of the assemblies and their properties. The review begins with a brief historical context of G self-assembly in water and then describes studies on lipophilic guanosine analogs in organic solvents. The article also focuses on examples of how G analogs have been used as building blocks for functional applications in supramolecular chemistry, material science and nanotechnology.
大自然利用简单的遗传密码实现生命的复杂功能,这为超分子化学提供了灵感。DNA核碱基利用多种协同和非共价相互作用来携带关键信息,如疏水作用、范德华力、π-π堆积、离子-偶极作用和氢键。本教程综述描述了基于鸟嘌呤(G)的体系自组装在形式和功能方面的一些最新进展。我们试图建立组装体结构与其性质之间的联系。综述首先简要介绍了G在水中自组装的历史背景,然后描述了在有机溶剂中对亲脂性鸟苷类似物的研究。本文还重点介绍了G类似物如何被用作超分子化学、材料科学和纳米技术中功能应用的构建块的实例。