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新型苯并咪唑衍生物介导的人类端粒重复序列形成的 G-四链体 DNA 的稳定性和结构改变。

Stabilization and structural alteration of the G-quadruplex DNA made from the human telomeric repeat mediated by Tröger's base based novel benzimidazole derivatives.

机构信息

Department of Organic Chemistry, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Med Chem. 2012 Sep 13;55(17):7460-71. doi: 10.1021/jm300442r. Epub 2012 Aug 30.

DOI:10.1021/jm300442r
PMID:22827615
Abstract

Ligand-induced stabilization of the G-quadruplex DNA structure derived from the single-stranded 3'-overhang of the telomeric DNA is an attractive strategy for the inhibition of the telomerase activity. The agents that can induce/stabilize a DNA sequence into a G-quadruplex structure are therefore potential anticancer drugs. Herein we present the first report of the interactions of two novel bisbenzimidazoles (TBBz1 and TBBz2) based on Tröger's base skeleton with the G-quadruplex DNA (G4DNA). These Tröger's base molecules stabilize the G4DNA derived from a human telomeric sequence. Evidence of their strong interaction with the G4DNA has been obtained from CD spectroscopy, thermal denaturation, and UV-vis titration studies. These ligands also possess significantly higher affinity toward the G4DNA over the duplex DNA. The above results obtained are in excellent agreement with the biological activity, measured in vitro using a modified TRAP assay. Furthermore, the ligands are selectively more cytotoxic toward the cancerous cells than the corresponding noncancerous cells. Computational studies suggested that the adaptive scaffold might allow these ligands to occupy not only the G-quartet planes but also the grooves of the G4DNA.

摘要

配体诱导的端粒 DNA 单链 3'突出序列形成的 G-四链体 DNA 结构的稳定化是抑制端粒酶活性的一种有吸引力的策略。因此,能够诱导/稳定 DNA 序列形成 G-四链体结构的试剂是潜在的抗癌药物。本文首次报道了两个基于 Troger 碱基骨架的新型双苯并咪唑(TBBz1 和 TBBz2)与 G-四链体 DNA(G4DNA)的相互作用。这些 Troger 碱基分子稳定了来自人类端粒序列的 G4DNA。从 CD 光谱、热变性和紫外可见滴定研究中获得了它们与 G4DNA 强相互作用的证据。这些配体与双链 DNA 相比,对 G4DNA 具有更高的亲和力。上述结果与体外使用改良的 TRAP 测定法测量的生物活性非常吻合。此外,这些配体对癌细胞的选择性细胞毒性高于相应的非癌细胞。计算研究表明,适应性支架可能允许这些配体不仅占据 G-四联体平面,还占据 G4DNA 的沟槽。

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