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C5取代的2'-脱氧尿苷多种α-端基异构体的1H NMR构象研究:与它们的抗疱疹β对应物的比较

1H NMR conformational study of a variety of alpha-anomers of C5-substituted 2'-deoxyuridines: comparison to their antiherpetic beta counterparts.

作者信息

Poznański J, Felczak K, Bretner M, Kulikowski T, Remin M

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, ul. Pawinskiego 5a, Warsaw, 02-106, Poland.

出版信息

Biochem Biophys Res Commun. 2001 May 25;283(5):1142-9. doi: 10.1006/bbrc.2001.4921.

Abstract

Although alpha-nucleosides are not found in nucleic acid, they do occur as constituents of smaller molecules in living cells, e.g., in vitamin B(12). There are now several examples of alpha-nucleosides exerting a biological activity in some instances equal to, or even exceeding, that of the corresponding beta-anomer. Examples include growth inhibitory properties against mouse leukemia cells and antitumor activity. From stereochemical point of view, alpha-anomers serve as references for studying of interaction of the base with the sugar moiety in beta-anomers and may help in better understanding of structure-activity relationships. One important problem preventing conformational analysis of alpha nucleosides is uncertainty in the determination of vicinal coupling constants from simulation of overlapping sugar proton resonances of strongly coupled spin systems. A successful resolution of near-isochronous H3' and H4' resonances made possible a full conformational analysis for a series of alpha-anomers C5-substituted 2'-deoxyuridines, including methyl, ethyl, isopropyl, fluor, vinyl, and bromovinyl, in comparison to their beta counterparts. Conformation of the sugar ring is determined from proton-proton coupling constants and described in terms of pseudorotation between two main puckering domains C2'endo (S) and C3'endo (N). A thorough analysis of chemical shifts as well as conformation of the sugar ring and C4'-C5' rotamers made possible determination of conformational preferences in equilibrium about the glycosidic bond between two regions, anti and syn. This work provides insights into the role of anomeric configuration of the base in conformational behavior of the sugar moiety, a link in the backbone of nucleic acids.

摘要

尽管α-核苷不存在于核酸中,但它们确实作为活细胞中较小分子的成分存在,例如在维生素B12中。现在有几个α-核苷在某些情况下发挥生物活性的例子,其活性等于甚至超过相应的β-异构体。例子包括对小鼠白血病细胞的生长抑制特性和抗肿瘤活性。从立体化学的角度来看,α-异构体可作为研究β-异构体中碱基与糖部分相互作用的参考,有助于更好地理解构效关系。阻碍α-核苷构象分析的一个重要问题是,通过模拟强耦合自旋系统的重叠糖质子共振来确定邻位耦合常数时存在不确定性。成功解析近等时的H3′和H4′共振,使得对一系列C5-取代的2′-脱氧尿苷α-异构体(包括甲基、乙基、异丙基、氟、乙烯基和溴乙烯基)与其β-对应物进行全面的构象分析成为可能。糖环的构象由质子-质子耦合常数确定,并根据两个主要褶皱域C2′内型(S)和C3′内型(N)之间的假旋转来描述。对化学位移以及糖环和C4′-C5′旋转异构体的构象进行全面分析,使得确定两个区域(反式和顺式)之间糖苷键平衡中的构象偏好成为可能。这项工作为碱基的异头构型在糖部分构象行为中的作用提供了见解,而糖部分是核酸主链中的一个环节。

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