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临床使用的口腔抗菌剂作为四重结合配体的特性。

Characterization of clinically used oral antiseptics as quadruplex-binding ligands.

机构信息

Chemical Biology Laboratory, National Cancer Institute, Frederick, MD 21702-1201, USA.

Laboratory of Cancer Biology and Genetics, National Cancer Institute, Bethesda, MD 20892-4258, USA.

出版信息

Nucleic Acids Res. 2018 Apr 6;46(6):2722-2732. doi: 10.1093/nar/gky084.

Abstract

Approaches to characterize the nucleic acid-binding properties of drugs and druglike small molecules are crucial to understanding the behavior of these compounds in cellular systems. Here, we use a Small Molecule Microarray (SMM) profiling approach to identify the preferential interaction between chlorhexidine, a widely used oral antiseptic, and the G-quadruplex (G4) structure in the KRAS oncogene promoter. The interaction of chlorhexidine and related drugs to the KRAS G4 is evaluated using multiple biophysical methods, including thermal melt, fluorescence titration and surface plasmon resonance (SPR) assays. Chlorhexidine has a specific low micromolar binding interaction with the G4, while related drugs have weaker and/or less specific interactions. Through NMR experiments and docking studies, we propose a plausible binding mode driven by both aromatic stacking and groove binding interactions. Additionally, cancer cell lines harbouring oncogenic mutations in the KRAS gene exhibit increased sensitivity to chlorhexidine. Treatment of breast cancer cells with chlorhexidine decreases KRAS protein levels, while a KRAS gene transiently expressed by a promoter lacking a G4 is not affected. This work confirms that known ligands bind broadly to G4 structures, while other drugs and druglike compounds can have more selective interactions that may be biologically relevant.

摘要

研究药物和类药小分子与核酸相互作用的特性的方法对于理解这些化合物在细胞系统中的行为至关重要。在这里,我们使用小分子微阵列(SMM)分析方法来鉴定广泛用于口腔消毒的洗必泰与 KRAS 致癌基因启动子中 G-四链体(G4)结构之间的优先相互作用。使用多种生物物理方法评估洗必泰及相关药物与 KRAS G4 的相互作用,包括热融解、荧光滴定和表面等离子体共振(SPR)测定。洗必泰与 G4 具有特定的低微摩尔结合相互作用,而相关药物的相互作用较弱且/或特异性较低。通过 NMR 实验和对接研究,我们提出了一种可能的结合模式,由芳香堆积和沟结合相互作用驱动。此外,携带 KRAS 基因致癌突变的癌细胞系对洗必泰表现出更高的敏感性。用洗必泰处理乳腺癌细胞会降低 KRAS 蛋白水平,而用缺乏 G4 的启动子瞬时表达的 KRAS 基因则不受影响。这项工作证实,已知的配体广泛结合 G4 结构,而其他药物和类药化合物可能具有更具选择性的相互作用,这可能具有生物学相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf2d/5888870/f45f4abb333a/gky084fig1.jpg

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