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具有临床前 9-氨基吖啶的人类端粒 G-四链体的结构和稳定性。

Structure and stability of human telomeric G-quadruplex with preclinical 9-amino acridines.

机构信息

Institute for Research in Biomedicine, IQAC-CSIC, CIBER-BBN Networking Center on Bioengineering, Biomaterials and Nanomedicine, Barcelona, Spain.

出版信息

PLoS One. 2013;8(3):e57701. doi: 10.1371/journal.pone.0057701. Epub 2013 Mar 15.

Abstract

G-quadruplexes are higher-order DNA structures formed from guanine-rich sequences, and have been identified as attractive anticancer drug targets. Elucidating the three-dimensional structure of G-quadruplex with 9-amino acridines and the specific interactions involved in binding selectivity are the key to understanding their mechanism of action. Fluorescence titration assays, competitive dialysis and NMR studies have been used to study the binding specificity of 9-amino acridines to DNA. Structural models of the complexes with the telomeric DNA G-quadruplex based on NMR measurements were developed and further examined by molecular dynamics simulations and free energy calculations. Selective binding of 9-amino acridines for G-quadruplex sequences were observed. These compounds bind between A and G-tetrads, involving significant π-π interactions and several strong hydrogen bonds. The specific interactions between different moieties of the 9-amino acridines to the DNA were examined and shown to play a significant role in governing the overall stabilities of DNA G-quadruplex complexes. Both 9-amino acridines, with similar binding affinities to the G-quadruplex, were shown to induce different level of structural stabilization through intercalation. This unique property of altering structural stability is likely a contributing factor for affecting telomerase function and, subsequently, the observed differences in the anticancer activities between the two 9-amino acridines.

摘要

G-四链体是由富含鸟嘌呤的序列形成的高级 DNA 结构,已被鉴定为有吸引力的抗癌药物靶标。阐明与 9-氨基吖啶结合的 G-四链体的三维结构和涉及结合选择性的特定相互作用是理解其作用机制的关键。荧光滴定法、竞争透析和 NMR 研究已被用于研究 9-氨基吖啶与 DNA 的结合特异性。基于 NMR 测量,开发了与端粒 DNA G-四链体的复合物的结构模型,并通过分子动力学模拟和自由能计算进一步进行了检查。观察到 9-氨基吖啶对 G-四链体序列的选择性结合。这些化合物在 A 和 G-四联体之间结合,涉及显著的π-π相互作用和几个强氢键。检查了 9-氨基吖啶的不同部分与 DNA 的特定相互作用,并表明它们在控制 DNA G-四链体复合物的整体稳定性方面起着重要作用。与 G-四链体具有相似结合亲和力的两种 9-氨基吖啶均通过嵌入诱导不同程度的结构稳定化。改变结构稳定性的这种独特性质可能是影响端粒酶功能的一个因素,进而导致两种 9-氨基吖啶在抗癌活性方面的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb89/3598906/a811a6faed8a/pone.0057701.g001.jpg

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