Quadruplex-forming oligonucleotides as tools in anticancer therapy and aptamers design: energetic aspects.

L Petraccone, G Barone, C Giancola
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引用次数: 19

Abstract

Recent investigations on the G-quadruplex motif propose a new strategy for the making of antitumour drugs. Quadruplex-drug complexes have been suggested to inhibit telomerase activity; further, aptamers based on the quadruplex motif have been proved useful as tools aimed at binding and inhibiting particular proteins, thus serving as pharmaceutically active agents. However, the design of new aptamers is difficult because many factors affecting their activity and stability have not still been clarified. The knowledge of the energetics of quadruplex formation is a crucial point in view of their potential therapeutic utilization both as targets as well as therapeutic agents. In this review the energetic aspects of both quadruplex assembly and quadruplex-ligand interactions are discussed together with a summary of recent studies on physico-chemical properties in solution of quadruplex structures obtained from synthetic aptamers, including PNA-DNA chimeras.

四聚体形成寡核苷酸作为抗癌治疗和适体设计的工具:能量方面。
最近对g -四重基序的研究为抗肿瘤药物的研制提供了新的思路。四复体药物复合物被认为可以抑制端粒酶的活性;此外,基于四重基序的适体已被证明是有效的工具,旨在结合和抑制特定的蛋白质,从而作为药物活性剂。然而,由于许多影响其活性和稳定性的因素尚未明确,设计新的适体是困难的。四重体形成的能量学知识对于它们作为靶点和治疗剂的潜在治疗利用是至关重要的。本文讨论了四重体组装和四重体-配体相互作用的能量方面,并总结了合成适配体(包括PNA-DNA嵌合体)获得的四重体结构溶液的物理化学性质的最新研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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