Jash Biswarup, Müller Jens
Westfälische Wilhelms-Universität Münster, Institut für Anorganische und Analytische Chemie and NRW Graduate School of Chemistry, Corrensstr. 28/30, 48149, Münster, Germany.
Chemistry. 2017 Dec 6;23(68):17166-17178. doi: 10.1002/chem.201703518. Epub 2017 Oct 11.
The investigation of metal-mediated base pairs and the development of their applications represent a prominent area of research at the border of bioinorganic chemistry and supramolecular coordination chemistry. In metal-mediated base pairs, the complementary nucleobases in a nucleic acid duplex are connected by coordinate bonds to an embedded metal ion rather than by hydrogen bonds. Because metal-mediated base pairs facilitate a site-specific introduction of metal-based functionality into nucleic acids, they are ideally suited for use in DNA nanotechnology. This minireview gives an overview of the general requirements that need to be considered when devising a new metal-mediated base pair, both from a conceptual and from an experimental point of view. In addition, it presents selected recent applications of metal-modified nucleic acids to indicate the scope of metal-mediated base pairing.
金属介导碱基对的研究及其应用开发是生物无机化学与超分子配位化学交叉领域的一个重要研究方向。在金属介导碱基对中,核酸双链体中的互补碱基通过配位键与嵌入的金属离子相连,而非氢键。由于金属介导碱基对有助于将基于金属的功能基团位点特异性地引入核酸中,因此它们非常适合用于DNA纳米技术。本综述从概念和实验的角度概述了设计新型金属介导碱基对时需要考虑的一般要求。此外,还介绍了金属修饰核酸的一些近期应用,以展示金属介导碱基配对的应用范围。