Ahn Dae-Ro, Egger Anita, Lehmann Christian, Pitsch Stefan, Leumann Christian J
Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, 3012 Bern, Switzerland.
Chemistry. 2002 Dec 2;8(23):5312-22. doi: 10.1002/1521-3765(20021202)8:23<5312::AID-CHEM5312>3.0.CO;2-M.
The design, synthesis, and base-pairing properties of bicyclo[3.2.1]amide-DNA (bca-DNA), a novel phosphodiester-based DNA analogue, are reported. This analogue consists of a conformationally constrained backbone entity, which emulates a B-DNA geometry, to which the nucleo-bases were attached through an extended, acyclic amide linker. Homobasic adenine-containing bca decamers form duplexes with complementary oligonucleotides containing bca, DNA, RNA, and, surprisingly, also L-RNA backbones. UV and CD spectroscopic investigations revealed the duplexes with D- or L-complements to be of similar stability and enantiomorphic in structure. Bca oligonucleotides that contain all four bases form strictly antiparallel, left-handed complementary duplexes with themselves and with complementary DNA, but not with RNA. Base-mismatch discrimination is comparable to that of DNA, while the overall thermal stabilities of bca-oligonucleotide duplexes are inferior to those of DNA or RNA. A detailed molecular modeling study of left- and right-handed bca-DNA-containing duplexes showed only minor changes in the backbone structure and revealed a structural switch around the base-linker unit to be responsible for the generation of enantiomorphic duplex structures. The obtained data are discussed with respect to the structural and energetic role of the ribofuranose entities in DNA and RNA association.
报道了一种新型基于磷酸二酯的DNA类似物双环[3.2.1]酰胺-DNA(bca-DNA)的设计、合成及碱基配对性质。该类似物由一个构象受限的主链实体组成,其模拟了B-DNA几何结构,核苷酸碱基通过一个延伸的、无环酰胺连接子连接到该主链实体上。含同型碱基腺嘌呤的bca十聚体与含有bca、DNA、RNA的互补寡核苷酸形成双链体,令人惊讶的是,还能与L-RNA主链形成双链体。紫外和圆二色光谱研究表明,与D-或L-互补链形成的双链体具有相似的稳定性且结构呈对映形态。含有所有四种碱基的bca寡核苷酸与自身以及与互补DNA形成严格反平行的左手互补双链体,但不与RNA形成双链体。碱基错配识别能力与DNA相当,而bca-寡核苷酸双链体的整体热稳定性低于DNA或RNA。对含左手和右手bca-DNA的双链体进行的详细分子建模研究表明,主链结构仅发生微小变化,并揭示碱基连接子单元周围的结构转换是对映形态双链体结构产生的原因。针对核糖呋喃糖实体在DNA和RNA缔合中的结构和能量作用对所得数据进行了讨论。