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将含2'-O-修饰RNA类似物的DNA双链体的结构与稳定性相关联。

Correlating structure and stability of DNA duplexes with incorporated 2'-O-modified RNA analogues.

作者信息

Tereshko V, Portmann S, Tay E C, Martin P, Natt F, Altmann K H, Egli M

机构信息

Drug Discovery Program, Northwestern University Medical School, Chicago, Illinois 60611-3008, USA.

出版信息

Biochemistry. 1998 Jul 28;37(30):10626-34. doi: 10.1021/bi980392a.

Abstract

Chemically modified nucleic acids are currently being evaluated as potential antisense compounds for therapeutic applications. 2'-O-Ethylene glycol substituted oligoribonucleotides are second-generation antisense inhibitors of gene expression with promising features for in vivo use. Relative to DNA, they display improved RNA affinity and higher nuclease resistance. Moreover, chimeric oligonucleotides with 2'-O-methoxyethyl ribonucleoside wings and a central DNA phosphorothioate window have been shown to effectively reduce the growth of tumors in animal models at low doses. Using X-ray crystallography, we have determined the structures of three A-form DNA duplexes containing the following 2'-O-modified ribothymidine building blocks: 2'-O-methoxyethyl ribo-T, 2'-O-methyl[tri(oxyethyl)] ribo-T, and 2'-O-ethoxymethylene ribo-T. In contrast to 2'-O-ethylene glycol substituents, the presence of a 2'-O-ethoxymethylene group leads to slightly reduced RNA affinity of the corresponding oligonucleotides. The three structures allow a qualitative rationalization of the differing stabilities of duplexes between oligonucleotides comprising these types of 2'-O-modified ribonucleotides and complementary RNAs. The stabilizing 2'-O-ethylene glycol substituents are conformationally preorganized for the duplex state. Thus, the presence of one or several ethylene glycol moieties may reduce the conformational space of the substituents in an oligonucleotide single strand. In addition, most of these preferred conformations appear to be compatible with the minor groove topology in an A-type duplex. Factors that contribute to the conformational rigidity of the 2'-O-substituents are anomeric and gauche effects, electrostatic interactions between backbone and substituent, and bound water molecules.

摘要

化学修饰的核酸目前正在作为治疗应用的潜在反义化合物进行评估。2'-O-乙二醇取代的寡核糖核苷酸是第二代基因表达反义抑制剂,具有在体内使用的良好特性。相对于DNA,它们表现出更高的RNA亲和力和更高的核酸酶抗性。此外,具有2'-O-甲氧基乙基核糖核苷侧翼和中央DNA硫代磷酸酯窗口的嵌合寡核苷酸已被证明在低剂量下能有效抑制动物模型中肿瘤的生长。通过X射线晶体学,我们确定了三种A-DNA双链体的结构,它们包含以下2'-O-修饰的核糖胸苷结构单元:2'-O-甲氧基乙基核糖-T、2'-O-甲基[三(氧乙基)]核糖-T和2'-O-乙氧基亚甲基核糖-T。与2'-O-乙二醇取代基不同,2'-O-乙氧基亚甲基基团的存在会导致相应寡核苷酸的RNA亲和力略有降低。这三种结构可以对包含这些类型的2'-O-修饰核糖核苷酸的寡核苷酸与互补RNA之间双链体稳定性的差异进行定性解释。稳定的2'-O-乙二醇取代基在构象上预先组织成双链状态。因此,一个或几个乙二醇部分的存在可能会减少寡核苷酸单链中取代基的构象空间。此外,这些优选构象中的大多数似乎与A型双链体中的小沟拓扑结构兼容。导致2'-O-取代基构象刚性的因素包括异头效应和gauche效应、主链与取代基之间的静电相互作用以及结合的水分子。

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