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新型荧光氮杂 Hx 酰胺的 DNA 结合性质:甲氧基吡啶基氮杂苯并咪唑吡咯并咪唑/吡咯。

DNA-Binding Properties of New Fluorescent AzaHx Amides: Methoxypyridylazabenzimidazolepyrroleimidazole/pyrrole.

机构信息

Department of Chemistry, Georgia State University, 50 Decatur Street SE, Atlanta, GA, 30303, USA.

Cancer Research (UK) Drug-DNA Interactions Research Group, UCL Cancer Institute, Gower Street, London, WC1E 6BT, UK.

出版信息

Chembiochem. 2018 Sep 17;19(18):1979-1987. doi: 10.1002/cbic.201800273. Epub 2018 Aug 15.

Abstract

DNA minor groove binding polyamides have been extensively developed to control abnormal gene expression. The establishment of novel, inherently fluorescent 2-(p-anisyl)benzimidazole (Hx) amides has provided an alternative path for studying DNA binding in cells by direct observation of cell localization. Because of the 2:1 antiparallel stacking homodimer binding mode of these molecules to DNA, modification of Hx amides to 2-(p-anisyl)-4-azabenzimidazole (AzaHx) amides has successfully extended the DNA-recognition repertoire from central CG [recognized by Hx-I (I=N-methylimidazole)] to central GC [recognized by AzaHx-P (P=N-methylpyrrole)] recognition. For potential targeting of two consecutive GG bases, modification of the AzaHx moiety to 2- and 3-pyridyl-aza-benzimidazole (Pyr-AzaHx) moieties was explored. The newly designed molecules are also small-sized, fluorescent amides with the Pyr-AzaHx moiety connected to two conventional five-membered heterocycles. Complementary biophysical methods were performed to investigate the DNA-binding properties of these molecules. The results showed that neither 3-Pyr-AzaHx nor 2-Pyr-AzaHx was able to mimic I-I=N-methylimidazole-N-methylimidazole to target GG dinucleotides specifically. Rather, 3-Pyr-AzaHx was found to function like AzaHx, f-I (f=formamide), or P-I as an antiparallel stacked dimer. 3-Pyr-AzaHx-PI (2) binds 5'-ACGCGT'-3' with improved binding affinity and high sequence specificity in comparison to its parent molecule AzaHx-PI (1). However, 2-Pyr-AzaHx is detrimental to DNA binding because of an unfavorable steric clash upon stacking in the minor groove.

摘要

DNA 小沟结合多聚体已被广泛开发用于控制异常基因表达。新型内在荧光 2-(p-茴香基)苯并咪唑 (Hx) 酰胺的建立为通过直接观察细胞定位研究细胞内 DNA 结合提供了另一种途径。由于这些分子与 DNA 形成 2:1 反平行堆积的同源二聚体结合模式,因此将 Hx 酰胺修饰为 2-(p-茴香基)-4-氮杂苯并咪唑 (AzaHx) 酰胺,成功地将 DNA 识别谱从中央 CG [由 Hx-I (I=N-甲基咪唑) 识别]扩展到中央 GC [由 AzaHx-P (P=N-甲基吡咯) 识别]。为了潜在靶向两个连续的 GG 碱基,对 AzaHx 部分进行修饰,得到 2-和 3-吡啶基-氮杂苯并咪唑 (Pyr-AzaHx) 部分。新设计的分子也是带有 Pyr-AzaHx 部分连接到两个常规的五元杂环的小型荧光酰胺。互补的生物物理方法被用来研究这些分子的 DNA 结合特性。结果表明,3-Pyr-AzaHx 和 2-Pyr-AzaHx 都不能模拟 I-I=N-甲基咪唑-N-甲基咪唑来特异性地靶向 GG 二核苷酸。相反,3-Pyr-AzaHx 被发现像 AzaHx、f-I(甲酰胺)或 P-I 一样作为反平行堆积的二聚体发挥作用。与母体分子 AzaHx-PI (1) 相比,3-Pyr-AzaHx-PI (2) 结合 5'-ACGCGT'-3' 具有改善的结合亲和力和高度的序列特异性。然而,2-Pyr-AzaHx 不利于 DNA 结合,因为在小沟堆积时会发生不利的空间冲突。

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