Takezawa Yusuke, Shionoya Mitsuhiko
Department of Chemistry, Graduate School of Science, The University of Tokyo, Tokyo, Japan.
Front Chem. 2020 Jan 15;7:925. doi: 10.3389/fchem.2019.00925. eCollection 2019.
Various nano-sized supramolecular architectures have been constructed from DNA molecules via sequence-dependent self-assembly. A DNA three-way junction (3WJ), consisting of three oligonucleotides that are partially complementary to each other, is one of the simplest DNA supramolecular structures. This minireview covers studies on DNA 3WJ motifs bridged by an interstrand metal complex with some related works. The incorporation of interstrand metal complexes into DNA has attracted increasing attention because it potentially allows for metal-dependent regulation of the thermal stability and the structure of DNA supramolecules. Metal-bridged DNA 3WJs were synthesized from three DNA strands containing a bipyridine (bpy)-modified nucleotide in the presence of appropriate metal ions. The bpy-modified DNA strands were crosslinked by an interstrand 3:1 metal complex [Ni(bpy) etc.] at the junction core. As a result, the thermal stability of the 3WJs was significantly enhanced upon metal complexation. Furthermore, metal-mediated structural transformation between DNA duplexes and 3WJs was demonstrated by using the same bpy-modified DNA strands. A mixture of bpy-modified strands and their natural complementary strands were self-assembled exclusively into duplexes in the absence of any transition metal ions. In contrast, addition of Ni ions induced the formation of 3WJs through the formation of an interstrand Ni(bpy) complex, which served as a template for the 3WJ assembly. Because DNA 3WJ structures are essential structural motifs for DNA-based nanoarchitectures, the metal-mediated stabilization and structural induction of metal-locked 3WJs would lead to many potential applications to artificial DNA architectures.
通过序列依赖性自组装,已经利用DNA分子构建了各种纳米尺寸的超分子结构。由三个彼此部分互补的寡核苷酸组成的DNA三向接头(3WJ)是最简单的DNA超分子结构之一。本综述涵盖了关于由链间金属配合物桥接的DNA 3WJ基序的研究以及一些相关工作。将链间金属配合物掺入DNA已引起越来越多的关注,因为它可能允许对DNA超分子的热稳定性和结构进行金属依赖性调控。在适当金属离子存在下,由三条含有联吡啶(bpy)修饰核苷酸的DNA链合成了金属桥连的DNA 3WJ。bpy修饰的DNA链在接头核心处通过链间3:1金属配合物[Ni(bpy)等]交联。结果,金属络合后3WJ的热稳定性显著增强。此外,使用相同的bpy修饰DNA链证明了DNA双链体和3WJ之间的金属介导的结构转变。在没有任何过渡金属离子的情况下,bpy修饰链及其天然互补链的混合物仅自组装成双链体。相反,添加Ni离子通过形成链间Ni(bpy)配合物诱导形成3WJ,该配合物作为3WJ组装的模板。由于DNA 3WJ结构是基于DNA的纳米结构的基本结构基序,金属锁定的3WJ的金属介导的稳定化和结构诱导将导致在人工DNA结构中有许多潜在应用。