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Construction and Structure Studies of DNA-bipyridine Complexes as Versatile Scaffolds for Site-Specific Incorporation of Metal Ions into DNA

机译:DNA-联吡啶配合物作为多功能支架的结构和结构研究用于金属离子在DNA中的位点特异性结合

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摘要

The facile construction of metal-DNA complexes by using ‘Click’ reactions is reported here. A series of 2’-propargyl-modified DNA oligonucleotides were initially synthesized as structure scaffolds and were then modified through ‘Click’ reaction to incorporate a bipyridine ligand equipped with an azido group. These metal chelating ligands can be placed in the DNA context in site-specific fashion to provide versatile templates for binding various metal ions, which are exchangeable by using a simple EDTA washing-and-filtration step. The constructed metal-DNA complexes were found to be thermally stable. Their structures were explored by solving a crystal structure of a propargyl-modified DNA duplex and installing the bipyridine ligands by molecular modeling and simulation. These metal-DNA complexes could have wide applications as novel organometallic catalysts, artificial ribonucleases and potential metal delivery systems.
机译:此处报道了利用“点击”反应轻松构建金属-DNA络合物的过程。最初将一系列2'-炔丙基修饰的DNA寡核苷酸合成为结构支架,然后通过“点击”反应进行修饰,以掺入带有叠氮基的联吡啶配体。这些金属螯合配体可以以位点特异性方式置于DNA环境中,以提供用于结合各种金属离子的通用模板,这些模板可通过使用简单的EDTA洗涤和过滤步骤进行交换。发现所构建的金属-DNA复合物是热稳定的。通过解析炔丙基修饰的DNA双链体的晶体结构并通过分子建模和模拟安装联吡啶配体,探索了它们的结构。这些金属-DNA配合物可作为新型有机金属催化剂,人造核糖核酸酶和潜在的金属传递系统得到广泛应用。

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