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四链体结构中的凸起:拓宽四链体形成序列的定义。

Bulges in G-quadruplexes: broadening the definition of G-quadruplex-forming sequences.

机构信息

School of Physical and Mathematical Sciences, Nanyang Technological University , Singapore.

出版信息

J Am Chem Soc. 2013 Apr 3;135(13):5017-28. doi: 10.1021/ja310251r. Epub 2013 Mar 22.

Abstract

We report on the first solution structure of an intramolecular G-quadruplex containing a single bulge and present evidence for extensive occurrence of bulges in different G-quadruplex contexts. The NMR solution structure of the d(TTGTGGTGGGTGGGTGGGT) sequence reveals a propeller-type parallel-stranded G-quadruplex containing three G-tetrad layers, three double-chain-reversal loops, and a bulge. All guanines participate in the formation of the G-tetrad core, despite the interruption between the first guanine and the next two guanines by a thymine, which forms a single-residue bulge and is projected out of the G-tetrad core. To provide a more general understanding about the formation of bulges within G-quadruplexes, we systematically investigated the effects of the residue type, the size, the position, and the number of bulges on the structure and stability of G-quadruplexes. The formation of bulges has also been observed in two different G-quadruplex scaffolds with different strand orientations and folding topologies. Our results show that bulges can be formed in many different situations within G-quadruplexes. While many sequences tested in this study can form stable G-quadruplex structures, all of them defy the description of sequences G3+NL1G3+NL2G3+NL3G3+, currently used in most bioinformatics searches for identifying potential G-quadruplex-forming sequences in the genomes. Broadening of this description to include the possibilities of bulge formation should allow the identification of more G-quadruplex-forming sequences which went unnoticed in the earlier searches. This study could also open the possibilities of exploiting bulges as recognition elements for interactions between G-quadruplexes and other molecules.

摘要

我们报告了第一个含有单个凸起的分子内 G-四链体的溶液结构,并提供了证据表明不同 G-四链体环境中广泛存在凸起。d(TTGTGGTGGGTGGGTGGGT)序列的 NMR 溶液结构揭示了一个三叶型平行股 G-四链体,包含三个 G-四联体层、三个双链反转环和一个凸起。尽管第一个鸟嘌呤和接下来的两个鸟嘌呤之间被胸腺嘧啶打断,但所有的鸟嘌呤都参与了 G-四联体核心的形成,胸腺嘧啶形成了一个单残基的凸起,并从 G-四联体核心中突出。为了更全面地了解 G-四链体中凸起的形成,我们系统地研究了残基类型、大小、位置和数量对 G-四链体结构和稳定性的影响。在具有不同链取向和折叠拓扑的两种不同 G-四链体支架中也观察到了凸起的形成。我们的结果表明,在 G-四链体中可以在许多不同的情况下形成凸起。虽然本研究中测试的许多序列可以形成稳定的 G-四链体结构,但它们都不符合目前大多数生物信息学搜索中用于识别基因组中潜在 G-四链体形成序列的 G3+NL1G3+NL2G3+NL3G3+描述。将这种描述扩展到包括形成凸起的可能性,应该可以识别出更多在早期搜索中未被注意到的形成 G-四链体的序列。这项研究还可以为利用凸起作为 G-四链体与其他分子相互作用的识别元件开辟可能性。

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