Suppr超能文献

分子内氨基对核糖核苷 3′-磷酸二酯键的断裂和异构化的参与:在膦酸酯中间体稳定化中的作用。

Intramolecular participation of amino groups in the cleavage and isomerization of ribonucleoside 3'-phosphodiesters: the role in stabilization of the phosphorane intermediate.

机构信息

Department of Chemistry, University of Turku, Vatselankatu 2, 20014 Turku (Finland), Fax: (+358) 2-333-6700.

出版信息

Chemistry. 2013 Sep 9;19(37):12424-34. doi: 10.1002/chem.201301711. Epub 2013 Jul 29.

Abstract

A dinucleoside-3',5'-phosphodiester model, 5'-amino-4'-aminomethyl-5'-deoxyuridylyl-3',5'-thymidine, incorporating two aminomethyl functions in the 4'-position of the 3'-linked nucleoside has been prepared and its hydrolytic reactions studied over a wide pH range. The amino functions were found to accelerate the cleavage and isomerization of the phosphodiester linkage in both protonated and neutral form. When present in protonated form, the cleavage of the 3',5'-phosphodiester linkage and its isomerization to a 2',5'-linkage are pH-independent and 50-80 times as fast as the corresponding reactions of uridylyl-3',5'-uridine (3',5'-UpU). The cleavage of the resulting 2',5'-isomer is also accelerated, albeit less than with the 3',5'-isomer, whereas isomerization back to the 3',5'-diester is not enhanced. When the amino groups are deprotonated, the cleavage reactions of both isomers are again pH-independent and up to 1000-fold faster than the pH-independent cleavage of UpU. Interestingly, the 2'- to 3'-isomerization is now much faster than its reverse reaction. The mechanisms of these reactions are discussed. The rate accelerations are largely accounted for by electrostatic and hydrogen-bonding interactions of the protonated amino groups with the phosphorane intermediate.

摘要

已制备了一种二核苷-3',5'-磷酸二酯模型物,5'-氨基-4'-氨基甲基-5'-脱氧尿苷基-3',5'-胸苷,其中在 3'-连接核苷的 4'-位置上包含两个氨基甲基官能团,并在较宽的 pH 范围内研究了其水解反应。发现这些氨基官能团在质子化和中性形式下均加速磷酸二酯键的裂解和异构化。当以质子化形式存在时,3',5'-磷酸二酯键的裂解及其异构化为 2',5'-键与相应的尿苷基-3',5'-尿苷(3',5'-UpU)的反应一样,与 pH 无关,并且快 50-80 倍。所得 2',5'-异构体的裂解也被加速,尽管不如 3',5'-异构体那样快,但异构化为 3',5'-二酯没有增强。当氨基去质子化时,两种异构体的裂解反应再次与 pH 无关,并且比 UpU 的 pH 无关的裂解快 1000 倍。有趣的是,2'-至 3'-异构化现在比其逆反应快得多。讨论了这些反应的机理。这些反应的速率加速主要归因于质子化氨基与膦烷中间体的静电和氢键相互作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验