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Structure of the Hybrid-2 type intramolecular human telomeric G-quadruplex in K+ solution: insights into structure polymorphism of the human telomeric sequence

机译:K +溶液中Hybrid-2型分子内人类端粒G-四链体的结构:对人类端粒序列结构多态性的见解

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Formation of the G-quadruplex in the human telomeric sequence can inhibit the activity of telomerase, thus the intramolecular telomeric G-quadruplexes have been considered as an attractive anticancer target. Information of intramolecular telomeric G-quadruplex structures formed under physiological conditions is important for structure-based drug design. Here, we report the first structure of the major intramolecular G-quadruplex formed in a native, non-modified human telomeric sequence in K+ solution. This is a hybrid-type mixed parallel/antiparallel-G-stranded G-quadruplex, one end of which is covered by a novel T: A: T triple capping structure. This structure (Hybrid-2) and the previously reported Hybrid-1 structure differ in their loop arrangements, strand orientations and capping structures. The distinct capping structures appear to be crucial for the favored formation of the specific hybrid-type intramolecular telomeric G-quadruplexes, and may provide specific binding sites for drug targeting. Our study also shows that while the hybrid-type G-quadruplexes appear to be the major conformations in K+ solution, human telomeric sequences are always in equilibrium between Hybrid-1 and Hybrid-2 structures, which is largely determined by the 3'-flanking sequence. Furthermore, both hybrid-type G-quadruplexes suggest a straightforward means for multimer formation with effective packing in the human telomeric sequence and provide important implications for drug targeting of G-quadruplexes in human telomeres.
机译:在人端粒序列中G-四链体的形成可以抑制端粒酶的活性,因此分子内端粒G-四链体被认为是有吸引力的抗癌靶标。在生理条件下形成的分子内端粒G-四链体结构信息对于基于结构的药物设计很重要。在这里,我们报告的主要分子内G四联体的第一个结构形成在K +溶液中的天然,未修饰的人类端粒序列中。这是一种杂合型混合平行/反平行G链G链四联体,其一端被新型T:A:T三重封端结构覆盖。该结构(Hybrid-2)和先前报道的Hybrid-1结构在环排列,链取向和封端结构方面有所不同。独特的封端结构对于特定杂合型分子内端粒G-四链体的良好形成至关重要,并且可以为药物靶向提供特异性结合位点。我们的研究还表明,尽管杂合型G-四链体似乎是K +溶液中的主要构象,但人类端粒序列始终在Hybrid-1和Hybrid-2结构之间处于平衡状态,这在很大程度上取决于3'侧翼顺序。此外,两种杂合型G-四链体均提示了在人端粒序列中有效包装的多聚体形成的直接方法,并为药物靶向人端粒中的G-四链体提供了重要意义。

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