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通过 NMR 和 UV 光谱学以及晶体学研究,深入了解腺嘌呤盐在 DMSO 中的阴阳离子相互作用和自组装。

Towards a Molecular Understanding of Cation-Anion Interactions and Self-aggregation of Adeninate Salts in DMSO by NMR and UV Spectroscopy and Crystallography.

机构信息

Department of Chemistry, University of Pretoria, Pretoria, 0002, Republic of South Africa.

Institute of Physical Chemistry, University of Stuttgart, 70569, Stuttgart, Germany.

出版信息

Chemphyschem. 2021 Oct 5;22(19):2025-2033. doi: 10.1002/cphc.202100098. Epub 2021 Aug 8.

Abstract

Rare anionic forms of nucleic acids play a significant biological role and lead to spontaneous mutations and replication and translational errors. There is a lack of information surrounding the stability and reactivity of these forms. Ion pairs of mono-sodium and -potassium salts of adenine exist in DMSO solution with possible cation coordination sites at the N1, N7 and N9 atoms of the purine ring. At increasing concentrations π-π stacked dimers are the predominant species of aggregates followed by higher order aggregation governed by coordination to metal cations in which the type of counter ion present has a central role in the aggregate formation.

摘要

稀有阴离子形式的核酸具有重要的生物学作用,并导致自发突变、复制和翻译错误。这些形式的稳定性和反应性的信息还很缺乏。腺嘌呤的单钠盐和钾盐在 DMSO 溶液中形成离子对,嘌呤环上的 N1、N7 和 N9 原子可能具有阳离子配位位点。随着浓度的增加,π-π 堆积二聚体是主要的聚集物,其次是受金属阳离子配位控制的更高阶聚集,其中存在的抗衡离子的类型在聚集形成中起着核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2db/8518609/9f67f9557a53/CPHC-22-2025-g001.jpg

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