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具有沃森-克里克碱基对和 hoogsteen 碱基对的小 DNA 哑铃结构及其稳定性

Structures and stabilities of small DNA dumbbells with Watson-Crick and Hoogsteen base pairs.

作者信息

Escaja Nuria, Gómez-Pinto Irene, Rico Manuel, Pedroso Enrique, González Carlos

机构信息

Departament de Química Orgànica, Universitat de Barcelona, C/. Martì I Franquès 1-11, 08028-Barcelona, Spain.

出版信息

Chembiochem. 2003 Jul 7;4(7):623-32. doi: 10.1002/cbic.200300578.

Abstract

The structures and stabilities of cyclic DNA octamers of different sequences have been studied by NMR and CD spectroscopy and by restrained molecular dynamics. At low oligonucleotide concentrations, some of these molecules form stable monomeric structures consisting of a short stem of two base pairs connected by two mini-loops of two residues. To our knowledge, these dumbbell-like structures are the smallest observed to date. The relative stabilities of these cyclic dumbbells have been established by studying their melting transitions. Dumbbells made up purely of GC stems are more stable than those consisting purely of AT base pairs. The order of the base pairs closing the loops also has an important effect on the stabilities of these structures. The NMR data indicate that there are significant differences between the solution structures of dumbbells with G-C base pairs in the stem compared to those with A-T base pairs. In the case of dumbbells with G-C base pairs, the residues in the stem form a short segment of a BDNA helix stabilized by two Watson-Crick base pairs. In contrast, in the case of d, the stem is formed by two A-T base pairs with the glycosidic angles of the adenine bases in a syn conformation, most probably forming Hoogsteen base pairs. Although the conformations of the loop residues are not very well defined, the thymine residues at the first position of the loop are observed to fold back into the minor groove of the stem.

摘要

通过核磁共振(NMR)、圆二色光谱(CD)以及受限分子动力学研究了不同序列的环状DNA八聚体的结构和稳定性。在低寡核苷酸浓度下,其中一些分子形成稳定的单体结构,该结构由两个碱基对的短茎和两个由两个残基组成的小环相连构成。据我们所知,这些哑铃状结构是迄今为止观察到的最小结构。通过研究它们的解链转变确定了这些环状哑铃结构的相对稳定性。纯由GC茎组成的哑铃结构比纯由AT碱基对组成的更稳定。封闭环的碱基对顺序对这些结构的稳定性也有重要影响。NMR数据表明,茎中含有G-C碱基对的哑铃结构的溶液结构与含有A-T碱基对的哑铃结构的溶液结构之间存在显著差异。对于含有G-C碱基对的哑铃结构,茎中的残基形成由两个沃森-克里克碱基对稳定的一小段BDNA螺旋。相比之下,对于d,茎由两个A-T碱基对形成,腺嘌呤碱基的糖苷键角处于顺式构象,很可能形成 hoogsteen 碱基对。尽管环残基的构象不是很明确,但观察到环第一位的胸腺嘧啶残基折叠回茎的小沟中。

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