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同时结合两个双链/四链适体与人α-凝血酶的结构和功能分析。

Structural and functional analysis of the simultaneous binding of two duplex/quadruplex aptamers to human α-thrombin.

机构信息

Department of Chemical Sciences, University of Naples Federico II, Complesso Universitario di Monte Sant'Angelo, Via Cintia, I-80126 Naples, Italy.

Institute of Biostructures and Bioimaging, CNR, Naples I-80134, Italy.

出版信息

Int J Biol Macromol. 2021 Jun 30;181:858-867. doi: 10.1016/j.ijbiomac.2021.04.076. Epub 2021 Apr 14.

Abstract

The long-range communication between the two exosites of human α-thrombin (thrombin) tightly modulates the protein-effector interactions. Duplex/quadruplex aptamers represent an emerging class of very effective binders of thrombin. Among them, NU172 and HD22 aptamers are at the forefront of exosite I and II recognition, respectively. The present study investigates the simultaneous binding of these two aptamers by combining a structural and dynamics approach. The crystal structure of the ternary complex formed by the thrombin with NU172 and HD22_27mer provides a detailed view of the simultaneous binding of these aptamers to the protein, inspiring the design of novel bivalent thrombin inhibitors. The crystal structure represents the starting model for molecular dynamics studies, which point out the cooperation between the binding at the two exosites. In particular, the binding of an aptamer to its exosite reduces the intrinsic flexibility of the other exosite, that preferentially assumes conformations similar to those observed in the bound state, suggesting a predisposition to interact with the other aptamer. This behaviour is reflected in a significant increase of the anticoagulant activity of NU172 when the inactive HD22_27mer is bound to exosite II, providing a clear evidence of the synergic action of the two aptamers.

摘要

人凝血酶(thrombin)两个外位点之间的远程通讯可紧密调节蛋白-效应物相互作用。双(四)链适体代表了一类非常有效的凝血酶结合物。其中,NU172 和 HD22 适体分别处于外位点 I 和 II 识别的前沿。本研究通过结合结构和动力学方法,研究了这两种适体的同时结合。形成的三元复合物的晶体结构凝血酶与 NU172 和 HD22_27mer 提供了一个详细的视图,这些适体同时结合到蛋白质上,激发了新型二价凝血酶抑制剂的设计。晶体结构代表了分子动力学研究的起始模型,该模型指出了两个外位点结合之间的合作。特别是,一个适体与其外位点的结合降低了另一个外位点的固有灵活性,该外位点优先呈现与结合状态中观察到的类似构象,表明其与另一个适体优先相互作用的倾向。这种行为反映在当非活性 HD22_27mer 结合到外位 II 时,NU172 的抗凝活性显著增加,这为两种适体的协同作用提供了明确的证据。

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