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双脒苯脲或贝尼尔是一种经典的双链小沟结合剂,它以低纳摩尔解离常数与G-四链体结合,且脒基对G-四链体结合也至关重要。

Diminazene or berenil, a classic duplex minor groove binder, binds to G-quadruplexes with low nanomolar dissociation constants and the amidine groups are also critical for G-quadruplex binding.

作者信息

Zhou Jie, Le Vu, Kalia Dimpy, Nakayama Shizuka, Mikek Clinton, Lewis Edwin A, Sintim Herman O

机构信息

Department of Chemistry and Biochemistry, University of Maryland, College Park, MD 20742, USA.

出版信息

Mol Biosyst. 2014 Oct;10(10):2724-34. doi: 10.1039/c4mb00359d.

Abstract

G-quadruplexes have shown great promise as chemotherapeutic targets, probably by inhibiting telomere elongation or downregulating oncogene expression. There have been many G-quadruplex ligands developed over the years but only a few have drug-like properties. Consequently only a few G-quadruplex ligands have entered clinical trials as cancer chemotherapeutic agents. The DNA minor groove ligand, berenil (diminazene aceturate or DMZ), is used to treat animal trypanosomiasis and hence its toxicological profile is already known, making it an ideal platform to engineer into new therapeutics. Herein, using a plethora of biophysical methods including UV, NMR, MS and ITC, we show that DMZ binds to several G-quadruplexes with a Kd of ∼1 nM. This is one of the strongest G-quadruplex binding affinities reported to date and is 10(3) tighter than the berenil affinity for an AT-rich duplex DNA. Structure-activity-relationship studies demonstrate that the two amidine groups on DMZ are important for binding to both G-quadruplex and duplex DNA. This work reveals that DMZ or berenil is not as selective for AT-rich duplexes as originally thought and that some of its biological effects could be manifested through G-quadruplex binding. The DMZ scaffold represents a good starting point to develop new G-quadruplex ligands for cancer cell targeting.

摘要

G-四链体作为化疗靶点已展现出巨大潜力,可能是通过抑制端粒延长或下调癌基因表达来实现的。多年来已开发出许多G-四链体配体,但只有少数具有类药物特性。因此,只有少数G-四链体配体作为癌症化疗药物进入了临床试验。DNA小沟配体贝尼尔(双脒苯脲乙酸盐或DMZ)用于治疗动物锥虫病,因此其毒理学特征已经明确,这使其成为改造为新型治疗药物的理想平台。在此,我们使用包括紫外、核磁共振、质谱和等温滴定量热法在内的大量生物物理方法表明,DMZ以约1 nM的解离常数(Kd)与几种G-四链体结合。这是迄今为止报道的最强的G-四链体结合亲和力之一,比贝尼尔与富含AT的双链DNA的亲和力高10³倍。构效关系研究表明,DMZ上的两个脒基对于与G-四链体和双链DNA的结合都很重要。这项工作表明,DMZ或贝尼尔对富含AT的双链体的选择性并不像最初认为的那样高,其一些生物学效应可能是通过与G-四链体结合来体现的。DMZ支架是开发用于靶向癌细胞的新型G-四链体配体的良好起点。

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