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Reversible manipulation of the G-quadruplex structures and enzymatic reactions through supramolecular host–guest interactions

机译:通过超分子宿主-客体相互作用可逆地操纵G-四链体结构和酶促反应

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摘要

Supramolecular chemistry addresses intermolecular forces and consequently promises great flexibility and precision. Biological systems are often the inspirations for supramolecular research. The G-quadruplex (G4) belongs to one of the most important secondary structures in nucleic acids. Until recently, the supramolecular manipulation of the G4 has not been reported. The present study is the first to disclose a supramolecular switch for the reversible control of human telomere G4s. Moreover, this supramolecular switch has been successfully used to manipulate an enzymatic reaction. Using various methods, we show that cucurbit[7]uril preferably locks and encapsulates the positively charged piperidines of Razo through supramolecular interactions. They can switch the conformations of the DNA inhibitor between a flexible state and the rigid G4 and are therefore responsible for the reversible control of the thrombin activity. Thus, our findings open a promising route and exhibit potential applications in future studies of chemical biology.
机译:超分子化学解决了分子间的作用力,因此具有很大的灵活性和准确性。生物系统通常是超分子研究的灵感。 G-四链体(G4)属于核酸中最重要的二级结构之一。直到最近,还没有关于G4的超分子操纵的报道。本研究是第一个公开用于人类端粒G4s可逆控制的超分子开关。此外,该超分子开关已成功用于操纵酶促反应。使用各种方法,我们显示葫芦[7] uril优选通过超分子相互作用锁定和封装Razo带正电荷的哌啶。它们可以在柔性状态和刚性G4之间切换DNA抑制剂的构象,因此负责凝血酶活性的可逆控制。因此,我们的发现为未来的化学生物学研究开辟了一条有希望的途径,并展示了潜在的应用前景。

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