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Human telomeric sequence forms a hybrid-type intramolecular G-quadruplex structure with mixed parallel/antiparallel strands in potassium solution

机译:人端粒序列在钾溶液中形成混合型平行/反平行链的杂合型分子内G-四链体结构

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摘要

Human telomeric DNA consists of tandem repeats of the sequence d(TTAGGG). The formation and stabilization of DNA G-quadruplexes in the human telomeric sequence have been shown to inhibit the activity of telomerase, thus the telomeric DNA G-quadruplex has been considered as an attractive target for cancer therapeutic intervention. However, knowledge of the intact human telomeric G-quadruplex structure(s) formed under physiological conditions is a prerequisite for structure-based rational drug design. Here we report the folding structure of the human telomeric sequence in K+ solution determined by NMR. Our results demonstrate a novel, unprecedented intramolecular G-quadruplex folding topology with hybrid-type mixed parallel/antiparallel G-strands. This telomeric G-quadruplex structure contains three G-tetrads with mixed G-arrangements, which are connected consecutively with a double-chain-reversal side loop and two lateral loops, each consisting of three nucleotides TTA. This intramolecular hybrid-type telomeric G-quadruplex structure formed in K+ solution is distinct from those reported on the 22 nt Tel22 in Na+ solution and in crystalline state in the presence of K+, and appears to be the predominant conformation for the extended 26 nt telomeric sequence Tel26 in the presence of K+, regardless of the presence or absence of Na+. Furthermore, the addition of K+ readily converts the Na+-form conformation to the K+-form hybrid-type G-quadruplex. Our results explain all the reported experimental data on the human telomeric G-quadruplexes formed in the presence of K+, and provide important insights for understanding the polymorphism and interconversion of various G-quadruplex structures formed within the human telomeric sequence, as well as the effects of sequence and cations. This hybrid-type G-quadruplex topology suggests a straightforward pathway for the secondary structure formation with effective packing within the extended human telomeric DNA. The hybrid-type telomeric G-quadruplex is most likely to be of pharmacological relevance, and the distinct folding topology of this G-quadruplex suggests that it can be specifically targeted by G-quadruplex interactive small molecule drugs.
机译:人端粒DNA由序列d(TTAGGG)的串联重复序列组成。已经显示人端粒序列中DNA G-四链体的形成和稳定抑制端粒酶的活性,因此端粒DNA G-四链体被认为是癌症治疗干预的有吸引力的靶标。但是,了解在生理条件下形成的完整人类端粒G-四链体结构是基于结构的合理药物设计的前提。在这里,我们报道了人类端粒序列在NMR测定的K + 溶液中的折叠结构。我们的结果证明了一种新颖的,前所未有的分子内G-四链体折叠拓扑结构,具有混合型混合平行/反平行G链。该端粒G-四链体结构包含具有混合G-排列的三个G-四联体,其与双链可逆侧环和两个侧环连续连接,每个侧环由三个核苷酸TTA组成。在K + 溶液中形成的分子内杂合型端粒G-四链体结构不同于在Na + 溶液中和存在下处于结晶状态的22 nt Tel22上报道的那些。 K + 的序列,似乎是存在K + 的26 nt端粒延伸序列Tel26的主要构象,而与Na + 。此外,添加K + 很容易将Na + 形式的构象转变为K + 形式的杂合型G-四链体。我们的结果解释了所有报道的关于存在K + 时形成的人类端粒G-四链体的实验数据,并为理解人类形成的各种G-四链体结构的多态性和相互转化提供了重要的见识。端粒序列,以及序列和阳离子的影响。这种杂种类型的G-四链体拓扑结构暗示了在扩展的人类端粒DNA内有效包装的二级结构形成的直接途径。杂合型端粒G-四链体最可能具有药理学意义,这种G-四链体的独特折叠拓扑结构表明它可以被G-四链体相互作用的小分子药物特异性靶向。

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