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通过与鸟嘌呤肽缀合物的 G-四联体互补和稳定作用,选择性靶向含鸟嘌呤空位的 G-四联体。

Selective Targeting of Guanine-Vacancy-Bearing G-Quadruplexes by G-Quartet Complementation and Stabilization with a Guanine-Peptide Conjugate.

机构信息

State Key Laboratory of Membrane Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, P. R. China.

Center for Healthy Aging, Changzhi Medical College, Changzhi 046000, Shanxi, P. R. China.

出版信息

J Am Chem Soc. 2020 Jul 1;142(26):11394-11403. doi: 10.1021/jacs.0c00774. Epub 2020 Jun 18.

Abstract

Stabilization of G-quadruplexes (G4s) formed in guanine-rich (G-rich) nucleic acids by small-molecule ligands has been extensively explored as a therapeutic approach for diseases such as cancer. Finding ligands with sufficient affinity and specificity toward G4s remains a challenge, and many ligands reported seemed to compromise between the two features. To cope with this challenge, we focused on targeting a particular type of G4s, i.e., the G-vacancy-bearing G-quadruplexes (GVBQs), by taking a structure complementation strategy to enhance both affinity and selectivity. In this approach, a G-quadruplex-binding peptide RHAU23 is guided toward a GVBQ by a guanine moiety covalently linked to the peptide. The filling-in of the vacancy in a GVBQ by the guanine ensures an exclusive recognition of GVBQ. Moreover, the synergy between the RHAU23 and the guanine dramatically improves both the affinity toward and stabilization of the GVBQ. Targeting a GVBQ in DNA by this bifunctional peptide strongly suppresses replication. This study demonstrates a novel and promising alternative targeting strategy to a distinctive panel of G4s that are as abundant as the canonical ones in the human genome.

摘要

小分子配体稳定富含鸟嘌呤(G 丰富)核酸中的 G-四链体(G4s),已被广泛探索作为治疗癌症等疾病的一种方法。寻找对 G4s 具有足够亲和力和特异性的配体仍然是一个挑战,许多报道的配体似乎在这两个特征之间做出了妥协。为了应对这一挑战,我们专注于通过结构互补策略来增强亲和力和选择性,从而靶向特定类型的 G4s,即带有 G-空位的 G-四链体(GVBQs)。在这种方法中,通过共价连接到肽上的鸟嘌呤部分将 G-四链体结合肽 RHAU23 引导至 GVBQ。通过鸟嘌呤填充 GVBQ 中的空位确保了对 GVBQ 的特异性识别。此外,RHAU23 和鸟嘌呤之间的协同作用极大地提高了 GVBQ 的亲和力和稳定性。通过这种双功能肽在 DNA 中靶向 GVBQ 强烈抑制了复制。这项研究展示了一种新颖且有前途的针对独特 G4s 面板的靶向策略,这些 G4s 在人类基因组中与典型 G4s 一样丰富。

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