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功能化银离子介导的α-dC/β-dC 杂合碱基对具有优异的稳定性:金属 DNA 中的α-d-5-碘-2'-脱氧胞苷及其辛二炔衍生物

Functionalized Silver-Ion-Mediated α-dC/β-dC Hybrid Base Pairs with Exceptional Stability: α-d-5-Iodo-2'-Deoxycytidine and Its Octadiynyl Derivative in Metal DNA.

机构信息

Laboratory of Bioorganic Chemistry and Chemical Biology, Center for Nanotechnology, Heisenbergstrasse 11, 48149, Münster, Germany.

Institut für Organische Chemie, Universität Münster, Corrensstrasse 40, 48149, Münster, Germany.

出版信息

Chemistry. 2019 Feb 26;25(12):3077-3090. doi: 10.1002/chem.201805299. Epub 2019 Feb 4.

DOI:10.1002/chem.201805299
PMID:30520165
Abstract

Silver-mediated α-dC-Ag -β-dC hybrid base pairs decorated with 5-iodo- or 5-octadiynyl residues are well accommodated in duplex DNA. A strong T increase and favorable thermodynamic data for duplex DNA were observed after addition of silver ions. The phenomenon is particularly obvious when both nucleobases of the base pairs are functionalized. Neither the position of the base pair, nor the type of 5-substituent had a negative influence. On the contrary, functionalization of conventional silver-mediated β-dC-Ag -β-dC homo base pairs showed a negative impact induced by the bulky substituents. To this end, cytosine modified 12-mer oligodeoxynucleotides were prepared by solid-phase synthesis employing new α-anomeric 2'-deoxycytidine phosphoramidites. A multigram scale synthesis was developed for 5-iodo-α-d-2'-deoxycytidine (1) employing the direct glycosylation of cytosine with Hoffer's α-d-halogenose followed by separation of anomeric DMT nucleosides. Regarding base-pair stability and functionalization silver-mediated α/β-dC hybrid base pairs were found to be superior to β/β-dC homo pairs. According to their extraordinary properties, they might find applications in DNA diagnostics, material science, or nanotechnology.

摘要

银介导的α-dC-Ag-β-dC 杂合碱基对用 5-碘代或 5-辛二炔基残基修饰后,可很好地容纳在双链 DNA 中。加入银离子后,观察到双链 DNA 的 T 增加明显,热力学数据有利。当碱基对的两个碱基都被功能化时,这种现象尤为明显。碱基对的位置和 5-取代基的类型都没有产生负面影响。相反,常规银介导的β-dC-Ag-β-dC 同型碱基对的功能化会因大体积取代基而产生负面影响。为此,通过固相合成使用新的α-构型 2'-脱氧胞苷磷酰胺,制备了经修饰的 12 -mer 寡脱氧核苷酸。采用 Hoffer 的α-d-卤代糖直接糖基化,然后分离非对映 DMT 核苷,开发了 5-碘-α-d-2'-脱氧胞苷(1)的多克规模合成。就碱基对稳定性和功能化而言,银介导的α/β-dC 杂合碱基对优于β/β-dC 同型碱基对。根据其特殊性质,它们可能在 DNA 诊断、材料科学或纳米技术领域得到应用。

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