Russo Krauss Irene, Spiridonova Vera, Pica Andrea, Napolitano Valeria, Sica Filomena
Department of Chemical Sciences, University of Naples 'Federico II', Naples, Italy Institute of Biostructures and Bioimages, C.N.R, Naples, Italy.
A.N. Belozersky Institute of Physico-Chemical Biology, M.V. Lomonosov Moscow State University, 119992 Moscow, Russia.
Nucleic Acids Res. 2016 Jan 29;44(2):983-91. doi: 10.1093/nar/gkv1384. Epub 2015 Dec 15.
Mixed duplex/quadruplex oligonucleotides have attracted great interest as therapeutic targets as well as effective biomedical aptamers. In the case of thrombin-binding aptamer (TBA), the addition of a duplex motif to the G-quadruplex module improves the aptamer resistance to biodegradation and the affinity for thrombin. In particular, the mixed oligonucleotide RE31 is significantly more effective than TBA in anticoagulation experiments and shows a slower disappearance rate in human plasma and blood. In the crystal structure of the complex with thrombin, RE31 adopts an elongated structure in which the duplex and quadruplex regions are perfectly stacked on top of each other, firmly connected by a well-structured junction. The lock-and-key shape complementarity between the TT loops of the G-quadruplex and the protein exosite I gives rise to the basic interaction that stabilizes the complex. However, our data suggest that the duplex motif may have an active role in determining the greater anti-thrombin activity in biological fluids with respect to TBA. This work gives new information on mixed oligonucleotides and highlights the importance of structural data on duplex/quadruplex junctions, which appear to be varied, unpredictable, and fundamental in determining the aptamer functional properties.
混合双链/四链体寡核苷酸作为治疗靶点以及有效的生物医学适配体引起了极大的关注。就凝血酶结合适配体(TBA)而言,在G-四链体模块中添加双链基序可提高适配体对生物降解的抗性以及对凝血酶的亲和力。特别是,混合寡核苷酸RE31在抗凝实验中比TBA显著更有效,并且在人血浆和血液中的消失速率较慢。在与凝血酶形成的复合物的晶体结构中,RE31呈现出一种拉长的结构,其中双链和四链体区域完美地相互堆叠,通过一个结构良好的连接区牢固连接。G-四链体的TT环与蛋白质外位点I之间的锁钥形状互补性产生了稳定复合物的基本相互作用。然而,我们的数据表明,双链基序在决定生物流体中相对于TBA更大的抗凝血酶活性方面可能具有积极作用。这项工作提供了关于混合寡核苷酸的新信息,并突出了双链/四链体连接区结构数据的重要性,这些连接区在决定适配体功能特性方面似乎是多样的、不可预测的且至关重要的。