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三环DNA的沃森-克里克碱基配对特性。

Watson-Crick base-pairing properties of tricyclo-DNA.

作者信息

Renneberg Dorte, Leumann Christian J

机构信息

Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, CH-3012 Bern, Switzerland.

出版信息

J Am Chem Soc. 2002 May 29;124(21):5993-6002. doi: 10.1021/ja025569+.

Abstract

Tricyclo-DNA belongs to the family of conformationally restricted oligodeoxynucleotide analogues. It differs structurally from DNA by an additional ethylene bridge between the centers C(3') and C(5') of the nucleosides, to which a cyclopropane unit is fused for further enhancement of structural rigidity. The synthesis of the hitherto unknown tricyclodeoxynucleosides containing the bases cytosine and guanine and of the corresponding phosphoramidite building blocks is described, as well as a structural description of a representative of an alpha- and a beta-tricyclodeoxynucleoside by X-ray analysis. Tricyclodeoxynucleoside building blocks of all four bases were used for the synthesis of fully modified mixed-base oligonucleotides. Their Watson-Crick pairing properties with complementary DNA, RNA, and with itself were investigated by UV melting curves, CD spectroscopy, and molecular modeling. Tricyclo-DNA was found to be a very stable Watson-Crick base-pairing system. A UV melting curve analysis of the decamers tcd(pcgtgacagtt) and tcd(paactgtcacg) showed increased thermal stabilities of up to DeltaT(m)/mod. = +1.2 degrees C with complementary DNA and +2.4 degrees C with complementary RNA. With itself, tricyclo-DNA showed an increase in stability of +3.1 degrees C/base pair relative to DNA. Investigations into the thermodynamic properties of these decamers revealed an entropic stabilization and an enthalpic destabilization for the tricyclo-DNA/DNA duplexes. CD spectroscopic structural investigations indicated that tricyclo-DNA containing duplexes preferrably exist in an A-conformation, a fact which is in agreement with results from molecular modeling.

摘要

三环DNA属于构象受限的寡脱氧核苷酸类似物家族。它在结构上与DNA的不同之处在于,核苷的C(3')和C(5')中心之间有一个额外的乙烯桥,一个环丙烷单元与该桥稠合,以进一步增强结构刚性。本文描述了迄今未知的含胞嘧啶和鸟嘌呤碱基的三环脱氧核苷及其相应亚磷酰胺构建块的合成,以及通过X射线分析对α-和β-三环脱氧核苷代表物的结构描述。所有四种碱基的三环脱氧核苷构建块被用于合成完全修饰的混合碱基寡核苷酸。通过紫外熔解曲线、圆二色光谱和分子建模研究了它们与互补DNA、RNA以及自身的沃森-克里克配对特性。发现三环DNA是一个非常稳定的沃森-克里克碱基配对系统。对十聚体tcd(pcgtgacagtt)和tcd(paactgtcacg)的紫外熔解曲线分析表明,与互补DNA杂交时热稳定性提高了ΔT(m)/mod. = +1.2℃,与互补RNA杂交时提高了+2.4℃。与自身杂交时,三环DNA相对于DNA每碱基对的稳定性提高了+3.1℃。对这些十聚体的热力学性质研究表明,三环DNA/DNA双链体存在熵稳定和焓不稳定现象。圆二色光谱结构研究表明,含三环DNA的双链体优先以A构象存在,这一事实与分子建模结果一致。

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