Aboul-ela F, Murchie A I, Lilley D M
Department of Biochemistry, University, Dundee, UK.
Nature. 1992 Nov 19;360(6401):280-2. doi: 10.1038/360280a0.
Multistranded DNA structures based upon guanine association have been proposed to be important in the structure of chromosome telomeres and in immunoglobulin class switching. Nucleic acids containing runs of guanine bases form a number of structures in vitro, including fold-back structures (Fig. 1a) and parallel-stranded quadruplex structures in DNA and RNA. The features of fold-back structures have now been determined at high-resolution. The different structures are probably based on a tetrad of hydrogen-bonded guanine bases (Fig. 1b), with buffer conditions and sequence effects mediating isomerization between the different forms. Here we use NMR spectroscopy to investigate the solution structure of the complex formed by the hexadeoxynucleotide d(TG4T) in the presence of sodium ions. We have observed the formation of a parallel-stranded quadruplex containing hydrogen-bonded tetrads of guanine. The parallel-stranded form differs significantly from the fold-back form, with individual nucleotide conformations being closer to those of B-form DNA.
基于鸟嘌呤缔合的多链DNA结构被认为在染色体端粒结构和免疫球蛋白类别转换中具有重要作用。含有连续鸟嘌呤碱基的核酸在体外会形成多种结构,包括回折结构(图1a)以及DNA和RNA中的平行链四重结构。现已通过高分辨率确定了回折结构的特征。不同的结构可能基于氢键连接的鸟嘌呤碱基形成的四联体(图1b),缓冲条件和序列效应介导了不同形式之间的异构化。在此,我们使用核磁共振光谱法研究十六聚脱氧核苷酸d(TG4T)在钠离子存在下形成的复合物的溶液结构。我们观察到了一种含有氢键连接的鸟嘌呤四联体的平行链四重结构的形成。平行链形式与回折形式有显著差异,单个核苷酸构象更接近B型DNA的构象。