含有反式5,6或5,7环骨架的2′,3′跨桥核酸二核苷酸的合成与结构分析。

IF 5.9 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Takashi Osawa, Ryota Nakanishi, Keito Uda, So Muramoto, Satoshi Obika
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引用次数: 0

摘要

人工核酸中寡核苷酸的糖或磷酸盐主链的构象适当固定,可形成稳定的双链。在这项研究中,我们设计了含有2',3'-反式桥接核酸的二核苷酸(2‘,3‘-反式bnas),基于糖的构象和主链的扭力角δ, ε, ζ, α和β可以通过在糖部分的2’和3’位置之间环化的5,6或5,7元的传递环骨架来控制。考虑到反式5,6-熔融环骨架的构建在合成上具有挑战性,我们对合成方法进行了优化,并对这些新的桥接2',3'-反式bna体系进行了详细的结构分析。2',3'-反式bnas可以由市售的d-葡萄糖衍生物合成,通过带有分子内羟基和内炔的环化前体实现关键的分子内金催化环化反应。对2',3'-反式bnas的结构分析表明,所有衍生物均为n型糖构象,与rna -双工构象相似,并且2',3'-反式bnas的ζ和α扭转角与天然双工构象的相应角度不同,是该化合物的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and structural analysis of dinucleotides containing 2',3'-trans-bridged nucleic acids with trans-5,6- or 5,7-fused ring skeleton.

Artificial nucleic acids in which the conformation of the sugar or phosphate backbone of the oligonucleotide is appropriately fixed can form stable duplexes. In this study, we designed dinucleotides containing 2',3'-trans-bridged nucleic acids (2',3'-trans-BNAs) based on the idea that the sugar conformation and torsions angles δ, ε, ζ, α, and β of the backbone can be controlled by a 5,6- or 5,7-membered trans-fused ring skeleton cyclized between the 2'- and 3'-positions of the sugar moiety. Given that the construction of trans-5,6-fused ring skeletons is synthetically challenging, the synthesis was optimized and a detailed structural analysis of these new bridged 2',3'-trans-BNA systems was conducted. The 2',3'-trans-BNAs could be synthesized from a commercially available D-glucose derivative with the key intramolecular gold-catalyzed cyclization reaction achieved using a cyclization precursor bearing an intramolecular hydroxy group and an internal alkyne. Structural analysis of the 2',3'-trans-BNAs showed an N-type sugar conformation for all the derivatives, which is similar to that in RNA-duplex, and the ζ and α torsion angles for the 2',3'-trans-BNAs were a characteristic feature of the compounds that differ from the corresponding angles of the natural duplexes.

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来源期刊
Communications Chemistry
Communications Chemistry Chemistry-General Chemistry
CiteScore
7.70
自引率
1.70%
发文量
146
审稿时长
13 weeks
期刊介绍: Communications Chemistry is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the chemical sciences. Research papers published by the journal represent significant advances bringing new chemical insight to a specialized area of research. We also aim to provide a community forum for issues of importance to all chemists, regardless of sub-discipline.
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