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Tuning the Polymorphism of the Anti-VEGF G-rich V7t1 Aptamer by Covalent Dimeric Constructs

机译:通过共价二聚体构建调节抗VEGF G-富含V7T1适体的多态性

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摘要

In the optimization process of nucleic acid aptamers, increased affinity and/or activity are generally searched by exploring structural analogues of the lead compound. In many cases, promising results have been obtained by dimerization of the starting aptamer. Here we studied a focused set of covalent dimers of the G-quadruplex (G4) forming anti-Vascular Endothelial Growth Factor (VEGF) V7t1 aptamer with the aim of identifying derivatives with improved properties. In the design of these covalent dimers, connecting linkers of different chemical nature, maintaining the same polarity along the strand or inverting it, have been introduced. These dimeric aptamers have been investigated using several biophysical techniques to disclose the conformational behavior, molecularity and thermal stability of the structures formed in different buffers. This in-depth biophysical characterization revealed the formation of stable G4 structures, however in some cases accompanied by alternative tridimensional arrangements. When tested for their VEGF165 binding and antiproliferative activity in comparison with V7t1, these covalent dimers showed slightly lower binding ability to the target protein but similar if not slightly higher antiproliferative activity on human breast adenocarcinoma MCF-7 cells. These results provide useful information for the design of improved dimeric aptamers based on further optimization of the linker joining the two consecutive V7t1 sequences.
机译:在核酸适体的优化过程中,通常通过探索铅化合物的结构类似物来搜索增加的亲和力和/或活性。在许多情况下,通过起始适体的二聚化已经获得了有希望的结果。在这里,我们研究了一种聚焦的G-Quadflex(G4)的共价二聚体,形成抗血管内皮生长因子(VEGF)V7T1适体,目的是鉴定具有改善性质的衍生物。在这些共价二聚体的设计中,已经引入了不同化学性质的连接器,保持沿着股线的相同极性或反相。已经使用几种生物物理技术研究了这些二聚体适体,以公开在不同缓冲液中形成的结构的构象行为,分子和热稳定性。这种深入的生物物理表征揭示了稳定的G4结构的形成,然而在某些情况下伴随着替代的延长装置。当与V7T1相比,当VEGF165结合和抗增殖活性测试时,这些共价二聚体对靶蛋白的结合能力略微较低,但是如果在人乳腺腺癌MCF-7细胞上没有稍高的抗增殖活性。这些结果基于加入两种连续V7T1序列的接头的进一步优化,提供了改进的二聚体适体的设计有用信息。

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